MJO Research

MJO Publications (Jump to PSD only pubs)


References



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Aiyyer, A., & Molinari, J. (2002). Evolution of mixed rossby gravity waves in MJO type environments. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

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Bergman, J. W., Hendon, H. H., & Weickmann, K. M. (2001). Intraseasonal air-sea interactions at the onset of el nino. Journal of Climate, Boston, MA, 14(8), 1702-1719.

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Carvalho, L. M. V., Jones, C., & Liebmann, B. (2004). The south atlantic convergence zone: intensity, form, persistence, and relationships with intraseasonal to interannual activity and extreme rainfall. Journal of Climate, 17(1), 88-108.

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Chao, W. C., & Chen, B. (2001). The role of surface friction in tropical intraseasonal oscillation. Monthly Weather Review, Boston, MA, 129(4), 896-904.

Chen, B., & Yanai, M. (2000). Comparison of the madden-julian oscillation (MJO) during the TOGA COARE IOP with a 15-year climatology. Journal of Geophysical Research, Washington, DC, 105(D2), 2139-2149.

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Colon, E., Lindesay, J., & Suarez, M. J. (2002). The impact of surface flux- and circulation-driven feedbacks on simulated madden-julian oscillations. Journal of Climate, 15(6), 624-641.

Compo, G. P., Kiladis, G. N., & Webster, P. J. (1999; 1999). The relationship between east asian pressure surges and the madden-julian oscillation. World Meteorological Organization, , 173-174.

Davidson, N., Adug, E., Hassan, W., Nguyen, P., & Prabowo, M. (2002). Diagnosis and prediction of some extreme rain events over southeast asia. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

de Laat, A. T. J., & Lelieveld, J. (2002). Interannual variability of the indian winter monsoon circulation and consequences for pollution levels. Journal of Geophysical Research.D.Atmospheres, 107(D24)

De Lima Moscati, M. C., & Rao, V. B. (2001). Energetics of the summer circulation over south america. Annales Geophysicae, 19(1), 83-97.

Dickinson, M., & Molinari, J. (2002). Mixed rossby-gravity waves and western pacific tropical cyclogenesis. part I: synoptic evolution. Journal of the Atmospheric Sciences, 59(14), 2183-2196.

Donald, A., Ribbe, J., Stone, R., Wheeler, M., Meinke, H., & Harris, G. et al. (2003). Using the real-time multivariate madden julian oscillation indices to predict rainfall in queensland (2003 - 7ICSHMO). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Fasullo, J., & Webster, P. J. (2000). Atmospheric and surface variations during westerly wind bursts in the tropical western pacific. Quarterly Journal of the Royal Meteorological Society, Berkshire, England, 126(564), 899-924.

Feldstein, S. B. (1999). The atmospheric dynamics of intraseasonal length-of-day fluctuations during the austral winter. Journal of the Atmospheric Sciences, Boston, MA, 56(17), 3043-3058.

Ferreira, R. N., Schubert, W. H., & Hack, J. J. (1996). Dynamical aspects of twin tropical cyclones associated with the madden-julian oscillation. Journal of the Atmospheric Sciences, Boston, MA, 53(7), 929-945.

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Fink, A., & Speth, P. (1997). Some potential forcing mechanisms of the year-to-year variability of the tropical convection and its intraseasonal (25-70-day) variability. International Journal of Climatology, Chichester, UK, 17(14), 1513-1534.

Flatau, M., & Flatau, P. (1999; 1999). Atmosphere ocean interactions in the equatorial perturbations. World Meteorological Organization, , 189-190.

Flatau, M., Flatau, P., Rudnick, D., & Niiler, P. P. (1999; 1999). Intraseasonal oscillations and asian monsoon onset. World Meteorological Organization, , 163-164.

Frederiksen, J. S. (2002). Genesis of intraseasonal oscillations and equatorial waves. Journal of the Atmospheric Sciences, 59(19), 2761-2781.

Fujiwara, M., Kita, K., & Ogawa, T. (1998). Stratosphere-troposphere exchange of ozone associated with the equatorial kelvin wave as observed with ozonesondes and rawinsondes. Journal of Geophysical Research, Washington, DC, 103(D15), 19173-19182.

Grabowski, W. W. (2003). MJO-like coherent structures: sensitivity simulations using the cloud-resolving convection parameterization (CRCP). Journal of the Atmospheric Sciences, 60(6), 847-864.

Grabowski, W. (2002). Cloud microphysics and the tropical climate: idealized aquaplanet simulations using the cloud-resolving convection parameterization (CRCP) (2002 - 11cldphy). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Grabowski, W. (2002). MJO-like coherent structures in idealized aquaplanet simulations. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

Grabowski, W., & Moncrieff, M. (2002). Large-scale organization of tropical convection in idealized numerical simulations: impact of radiative processes (2002 - 11atrad). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Grabowski, W., & Moncrieff, M. (2002). Large-scale organization of tropical convection in idealized numerical simulations: impact of radiative processes (2002 - 11atrad). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Gualdi, S., Navarra, A., & Tinarelli, G. (1999). The interannual variability of the madden-julian oscillation in an ensemble of GCM simulations. Climate Dynamics, Berlin, Germany, 15(9), 643-658.

Gualdi, S., Navarra, A., & von Storch, H. (1997). Tropical intraseasonal oscillation appearing in operational analyses and in a family of general circulation models. Journal of the Atmospheric Sciences, Boston, MA, 54(9), 1185-1202.

Gualdi, S., von Storch, H., & Navarra, A. (1995; 1995). Tropical intraseasonal oscillation appearing in operational analyses and in a family of general circulation models. Max-Planck-Institut fuer Meteorologie, , 38.

Hall, J. D., Matthews, A. J., & Karoly, D. J. (2001). The modulation of tropical cyclone activity in the australian region by the madden-julian oscillation. Monthly Weather Review, 129(12), 2970-2982.

Hall-McKim, E., Nolin, A., Lo, F., Serreze, M., & Clark, M. (2002). Frequency analysis of intraseasonal variations in the north american monsoon system. 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Han, W., Lawrence, D. M., & Webster, P. J. (2001). Dynamical response of equatorial indian ocean to intraseasonal winds: zonal flow. Geophysical Research Letters, 28(22), 4215-4218.

Harris, K. A. (1999; 1999). Teleconnection patterns associated with the MJO: a shallow water model analysis. World Meteorological Organization, , 409-410.

Hartmann, D. L., & Maloney, E. D. (2001). The madden-julian oscillation, barotropic dynamics, and north pacific tropical cyclone formation. part II: stochastic barotropic modeling. Journal of the Atmospheric Sciences, 58(17), 2559-2570.

Hartmann, D. L., Michelsen, M. L., & Klein, S. A. (1992). Seasonal variations of tropical intraseasonal oscillations: a 20-25-day oscillation in the western pacific. Journal of the Atmospheric Sciences, Boston, MA, 49(14), 1277-1289.

Hendon, H. H. (2000). Impact of air-sea coupling on the madden-julian oscillation in a general circulation model. Journal of the Atmospheric Sciences, Boston, MA, 57(24), 3939-3952.

Hendon, H. H. (1995). Length of day changes associated with the madden-julian oscillation. Journal of the Atmospheric Sciences, Boston, MA, 52(13), 2373-2383.

Hendon, H. H., & Glick, J. (1997). Intraseasonal air-sea interaction in the tropical indian and pacific oceans. Journal of Climate, Boston, MA, 10(4), 647-661.

Hendon, H. H., & Liebmann, B. (1994). Organization of convection within the madden-julian oscillation. Journal of Geophysical Research, Washington, DC, 99(D4), 8073-8083.

Hendon, H. H., Liebmann, B., & Glick, J. D. (1998). Oceanic kelvin waves and the madden-julian oscillation. Journal of the Atmospheric Sciences, Boston, MA, 55(1), 88-101.

Hendon, H. H., Liebmann, B., Newman, M., Glick, J. D., & Schemm, J. E. (2000). Medium-range forecast errors associated with active episodes of the madden-julian oscillation. Monthly Weather Review, Boston, MA, 128(1), 69-86.

Hendon, H. H., & Salby, M. L. (1996). Planetary-scale circulations forced by intraseasonal variations of observed convection. Journal of the Atmospheric Sciences, Boston, MA, 53(12), 1751-1758.

Hendon, H. H., & Salby, M. L. (1994). The life cycle of the madden-julian oscillation. Journal of the Atmospheric Sciences, Boston, MA, 51(15), 2225-2237.

Hendon, H. H., Zhang, C., & Glick, J. D. (1999). Interannual variation of the madden-julian oscillation during austral summer. Journal of Climate, Boston, MA, 12(8), 2538-2550.

Higgins, R. W., & Shi, W. (2001). Intercomparison of the principal modes of interannual and intraseasonal variability of the north american monsoon system. Journal of Climate, 14(3), 403-417.

Higgins, R. W., & Shi, W. (2001). Intercomparison of the principal modes of interannual and intraseasonal variability of the north american monsoon system. Journal of Climate, Boston, MA, 14(3), 403-417.

Hung, C. -., & Yanai, M. (2002). Factors contributing to the onset of the australian summer monsoon. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

Johnson, R. H., Ciesielski, P. E., & Cotturone, J. A. (2001). Multiscale variability of the atmospheric mixed layer over the western pacific warm pool. Journal of the Atmospheric Sciences, 58(18), 2729-2750.

Jones, C., Carvalho, L. M. V., Wayne Higgins, R., Waliser, D. E., & Schemm, J. E. (2004). Climatology of tropical intraseasonal convective anomalies: 1979-2002. Journal of Climate, 17(3), 523-539.

Jones, C., Carvalho, L., Higgins, W., Waliser, D., & Schemm, J. -. (2003). Variability of tropical intraseasonal convective anomalies (2003 - 14GLOBAL). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Jones, C., Waliser, D. E., Schemm, J. -. E., & Lau, W. K. M. (2000). Prediction skill of the madden and julian oscillation in dynamical extended range forecasts. Climate Dynamics, Berlin, Germany, 16(4), 273-289.

Jones, C. (2000). Occurrence of extreme precipitation events in california and relationships with the madden-julian oscillation. Journal of Climate, Boston, MA, 13(20), 3576-3587.

Jones, C., & Schemm, J. E. (2000). The influence of intraseasonal variations on medium- to extended-range weather forecasts over south america. Monthly Weather Review, Boston, MA, 128(2), 486-494.

Jones, C., Waliser, D. E., & Gautier, C. (1998). The influence of the madden-julian oscillation on ocean surface heat fluxes and sea surface temperature. Journal of Climate, Boston, MA, 11(5), 1057-1072.

Jones, C., & Weare, B. C. (1996). The role of low-level moisture convergence and ocean latent heat fluxes in the madden and julian oscillation: an observational analysis using ISCCP data and ECMWF analyses. Journal of Climate, Boston, MA, 9(12), 3086-3104.

Kane, R. P. (2000). ENSO relationship with indian rainfall in different months. International Journal of Climatology, Chichester, UK, 20(7), 783-792.

Kayano, M. T., & Kousky, V. E. (1999). Intraseasonal (30-60 day) variability in the global tropics: principal modes and their evolution. Tellus.Series A-B, Stockholm, Sweden, 51A(3), 373-386.

Kemball-Cook, S. R., & Weare, B. C. (2001). The onset of convection in the madden-julian oscillation. Journal of Climate, Boston, MA, 14(5), 780-793.

Kessler, W. S. (2001). EOF representations of the madden-julian oscillation and its connection with ENSO. Journal of Climate, 14(13), 3055-3061.

Kessler, W. S., & Kleeman, R. (2000). Rectification of the madden-julian oscillation into the ENSO cycle. Journal of Climate, Boston, MA, 13(20), 3560-3575.

Kessler, W. S., McPhaden, M. J., & Weickmann, K. M. (1995). Forcing of intraseasonal kelvin waves in the equatorial pacific. Journal of Geophysical Research, Washington, DC, 100(C6), 10613-10631.

Kikuchi, K., & Takayabu, Y. N. (2003). Equatorial circumnavigation of moisture signal associated with the madden- julian oscillation (MJO) during boreal winter. Journal of the Meteorological Society of Japan, 81(4), 851-869.

Kiladis, G. (2003). Ocean-atmosphere interaction within equatorially trapped atmospheric waves (2003 - 12ISA). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Kiladis, G., & Revell, M. (2003). Modulation of southern hemisphere storm track activity by the madden-julian oscillation (2003 - 7ICSHMO). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Kiladis, G., & Straub, K. (2003). Ocean-atmosphere interaction within equatorially trapped atmospheric waves (2003 - 12ISA). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Krishnamurti, T. N., Chakraborty, D. R., Cubukcu, N., Stefanova, L., & Vijayakumar, T. S. V. (2003). A mechanism of the madden-julian oscillation based on interactions in the frequency domain. Quarterly Journal of the Royal Meteorological Society, 129(593B), 2559-2590.

Krishnan, R., & Venkatesan, C. (1997). Mechanisms of low frequency intraseasonal oscillations of the indian summer monsoon. Meteorology and Atmospheric Physics, Vienna, Austria, 62(1-2), 101-128.

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Lau, K. -., Li, X., & Wu, H. T. (2002). Evolution of the large scale circulation, cloud structure and regional water cycle associated with the south china sea monsoon during may-june, 1998. Journal of the Meteorological Society of Japan, 80(5), 1129-1147.

Lau, K. -., Sheu, P. -., & Kang, I. -. (1994). Multiscale low-frequency circulation modes in the global atmosphere. Journal of the Atmospheric Sciences, Boston, MA, 51(9), 1169-1193.

Lau, K. -., Sheu, P. J., Schubert, S., Ledvina, D., & Weng, H. (1996). Evolution of large-scale circulation during TOGA COARE: model intercomparison and basic features. Journal of Climate, Boston, MA, 9(5), 986-1003.

Lau, K. -., & Sui, C. -. (1997). Mechanisms of short-term sea surface temperature regulation: observations during TOGA COARE. Journal of Climate, Boston, MA, 10(3), 465-472.

Lau, K. -., & Wu, H. -. (1994). Large scale dynamics associated with super cloud cluster organization over the tropical western pacific. Journal of the Meteorological Society of Japan, Tokyo, Japan, 72(4), 481-497.

Lee, S. (1999). Why are the climatological zonal winds easterly in the equatorial upper troposphere? Journal of the Atmospheric Sciences, Boston, MA, 56(10), 1353-1363.

Li, W., Yu, R., & Zhang, X. (2001). Impacts of sea surface temperature in the tropical pacific on interannual variability of madden-julian oscillation in precipitation. Advances in Atmospheric Sciences, Beijing, China, 18(3), 429-444.

Liebmann, B., Hendon, H. H., & Glick, J. D. (1994). The relationship between tropical cyclones of the western pacific and indian oceans and the madden-julian oscillation. Journal of the Meteorological Society of Japan, Tokyo, Japan, 72(3), 401-412.

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Lin, J. W., Neelin, J. D., & Zeng, N. (2000). Maintenance of tropical intraseasonal variability: impact of evaporation-wind feedback and midlatitude storms. Journal of the Atmospheric Sciences, Boston, MA, 57(17), 2793-2823.

Lin, J. W., Neelin, J. D., & Zeng, N. (1999; 1999). Maintenance of tropical intraseasonal variability in an intermediate-complexity atmospheric model. World Meteorological Organization, , 179-180.

Lo, F., & Hendon, H. H. (2000). Empirical extended-range prediction of the madden-julian oscillation. Monthly Weather Review, Boston, MA, 128(7), 2528-2543.

Maloney, E. D. (2002). An intraseasonal oscillation composite life cycle in the NCAR CCM3.6 with modified convection. Journal of Climate, 15(9), 964-982.

Maloney, E. D., & Esbensen, S. K. (2003). The amplification of east pacific madden-julian oscillation convection and wind anomalies during june-november. Journal of Climate, 16(21), 3482-3497.

Maloney, E. D., & Hartmann, D. L. (2001). The madden-julian oscillation, barotropic dynamics, and north pacific tropical cyclone formation. part I: observations. Journal of the Atmospheric Sciences, 58(17), 2545-2558.

Maloney, E. D., & Kiehl, J. T. (2002). Intraseasonal eastern pacific precipitation and SST variations in a GCM coupled to a slab ocean model. Journal of Climate, 15(21), 2989-3007.

Maloney, E. D., & Kiehl, J. T. (2002). MJO-related SST variations over the tropical eastern pacific during northern hemisphere summer. Journal of Climate, 15(6), 675-689.

Maloney, E. D., & Hartmann, D. L. (2000). Modulation of eastern north pacific hurricanes by the madden-julian oscillation. Journal of Climate, Boston, MA, 13(9), 1451-1460.

Maloney, E. D., & Hartmann, D. L. (2000). Modulation of hurricane activity in the gulf of mexico by the madden-julian oscillation. Science, Washington, DC, 287(5460), 2002-2004.

Maloney, E. D., & Hartmann, D. L. (1998). Frictional moisture convergence in a composite life cycle of the madden-julian oscillation. Journal of Climate, Boston, MA, 11(9), 2387-2403.

Marcus, S. L., Dickey, J. O., & De Viron, O. (2001). Links between intraseasonal (extended MJO) and ENSO timescales: insights via geodetic and atmospheric analysis. Geophysical Research Letters, 28(18), 3465-3468.

Marcus, S. L., Ghil, M., & Dickey, J. O. (1994). The extratropical 40-day oscillation in the UCLA general circulation model. part I: atmospheric angular momentum. Journal of the Atmospheric Sciences, Boston, MA, 51(11), 1431-1446.

Marshall, A., Alves, O., Hendon, H., & Karoly, D. (2003). Investigating the role of air-sea coupling on the madden julian oscillation (2003 - 7ICSHMO). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Matthews, A. J. (2000). Propagation mechanisms for the madden-julian oscillation. Quarterly Journal of the Royal Meteorological Society, Berkshire, England, 126(569), 2637-2651.

Matthews, A. J., Hoskins, B. J., Slingo, J. M., & Blackburn, M. (1996). Development of convection along the SPCZ within a madden-julian oscillation. Quarterly Journal of the Royal Meteorological Society, Berkshire, England, 122(531), 669-688.

Matthews, A. J., & Kiladis, G. N. (1999). The tropical-extratropical interaction between high-frequency transients and the madden-julian oscillation. Monthly Weather Review, Boston, MA, 127(5), 661-677.

Matthews, A. J., & Lander, J. (1999). Physical and numerical contributions to the structure of kelvin wave-CISK modes in a spectral transform model. Journal of the Atmospheric Sciences, Boston, MA, 56(23), 4050-4058.

Matthews, A. J., Slingo, J. M., Hoskins, B. J., & Inness, P. M. (1999). Fast and slow kelvin waves in the madden-julian oscillation of a GCM. Quarterly Journal of the Royal Meteorological Society, Berkshire, England, 125(557), 1473-1498.

Meehl, G. A., Kiladis, G. N., Weickmann, K. M., Wheeler, M., Gutzler, D. S., & Compo, G. P. (1996). Modulation of equatorial subseasonal convective episodes by tropical-extratropical interaction in the indian and pacific ocean regions. Journal of Geophysical Research, Washington, DC, 101(D10), 15033-15049.

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Miller, A. J., Zhou, S., & Yang, S. (2003). Relationship of the arctic and antarctic oscillations to the outgoing longwave radiation. Journal of Climate, 16(10), 1583-1592.

Mo, K. C. (2000). Intraseasonal modulation of summer precipitation over north america. Monthly Weather Review, Boston, MA, 128(5), 1490-1505.

Mo, K. C. (1999). Alternating wet and dry episodes over california and intraseasonal oscillations. Monthly Weather Review, Boston, MA, 127(12), 2759-2776.

Molinari, J., Knight, D., Dickinson, M., Vollaro, D., & Skubis, S. (1997). Potential vorticity, easterly waves, and eastern pacific tropical cyclogenesis. Monthly Weather Review, Boston, MA, 125(10), 2699-2708.

Molinari, J., & Vollaro, D. (2000). Planetary- and synoptic-scale influences on eastern pacific tropical cyclogenesis. Monthly Weather Review, Boston, MA, 128(9), 3296-3307.

Moore, A. M., & Kleeman, R. (1999; 1999). Stochastic forcing of ENSO intraseasonal variability: implications for ENSO prediction and predictability. World Meteorological Organization, , 383-384.

Moskowitz, B. M., & Bretherton, C. S. (2000). An analysis of frictional feedback on a moist equatorial kelvin mode. Journal of the Atmospheric Sciences, Boston, MA, 57(13), 2188-2206.

Myers, D. S., & Waliser, D. E. (2003). Three-dimensional water vapor and cloud variations associated with the madden-julian oscillation during northern hemisphere winter. Journal of Climate, 16(6), 929-950.

Myers, D., & Waliser, D. (2003). Analysis of moisture variability associated with the madden julian oscillation during northern hemisphere winter (2003 - VARIH2O). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Nakazawa, T. (2000). MJO and tropical cyclone activity during 1997/98 ENSO. Advances in Space Research, Oxford, England, 25(5), 953-958.

Nakazawa, T. (1999; 1999). MJOAa key component in the atmosphere for triggering ENSO. World Meteorological Organization, , 165-166.

Oouchi, K., & Yamasaki, M. (2001). An MJO-like gravity wave and superclusters simulated in a two-dimensional cumulus-scale-resolving model under a warm pool condition. Journal of the Meteorological Society of Japan, 79(1), 201-218.

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Rajendran, K., Nanjundiah, R. S., & Srinivasan, J. (2002). The impact of surface hydrology on the simulation of tropical intraseasonal oscillation in NCAR (CCM2) atmospheric GCM. Journal of the Meteorological Society of Japan, 80(6), 1357-1381.

Raymond, D. J. (2001). A new model of the madden-julian oscillation. Journal of the Atmospheric Sciences, 58(18), 2807-2819.

Ren, B., & Huang, R. (2003). 30-60-day oscillations of convection and circulation associated with the thermal state of the western pacific warm pool during boreal summer. Advances in Atmospheric Sciences, 20(5), 781-793.

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Shinoda, T., & Hendon, H. H. (2001). Upper-ocean heat budget in response to the madden-julian oscillation in the western equatorial pacific. Journal of Climate, 14(21), 4147-4165.

Shinoda, T., & Hendon, H. (1999; 1999). Modeling of intraseasonal variability in the tropical western pacific and indian oceans. World Meteorological Organization, , 187-188.

Shinoda, T., Hendon, H. H., & Glick, J. (1998). Intraseasonal variability of surface fluxes and sea surface temperature in the tropical western pacific and indian oceans. Journal of Climate, Boston, MA, 11(7), 1685-1702.

Slingo, J. M., Rowell, D. P., Sperber, K. R., & Nortley, F. (1999; 1999). On the predictability of the interannual behaviour of the madden-julian oscillation and its relationship to el nino. World Meteorological Organization, , 335-336.

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Stephens, D., & Lamond, M. (2003). ENSO: the equator and the southern mid-latitudes must work together (2003 - 7ICSHMO). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Teng, H., & Wang, B. (2003). Interannual variations of the boreal summer intraseasonal oscillation in the asian-pacific region. Journal of Climate, 16(22), 3572-3584.

Tompkins, A., & Jung, T. (2002). Investigation of the MJO in the ECMWF model. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

Tung, W., & Yanai, M. (2002). Convective momentum transport observed during the TOGA COARE IOP. part 2. case studies. Journal of the Atmospheric Sciences, 59(17), 2535-2549.

Tung, W., & Yanai, M. (2002). Convective momentum transport observed during the TOGA COARE IOP. part I: general features. Journal of the Atmospheric Sciences, 59(11), 1857-1871.

Tung, W. -., & Yanai, M. (2002). Convective momentum transport observed during the TOGA COARE IOP: implications for parameterization. 45 Beacon St. Boston MA 02108-3693 USA, [URL:http://www.ametsoc.org]: American Meteorological Society.

Tung, W. (1999; 1999). The madden-julian oscillation (MJO) observed during the TOGA-COARE intensive observing period. part II: convection associated with MJO. World Meteorological Organization, , 169-170.

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Vincent, D. G., Fink, A., Schrage, J. M., & Speth, P. (1998). High- and low-frequency intraseasonal variance of OLR on annual and ENSO timescales. Journal of Climate, Boston, MA, 11(5), 968-986.

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Waliser, D. (2002). Potential predictability of the madden-julian oscillation. 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

Waliser, D. (2002). Potential predictability of the madden-julian oscillation (2002 - observations). 45 Beacon St. Boston MA 02108-3693 USA: American Meteorological Society. Retrieved July 12, 2004, from Meteorological & Geoastrophysical Abstracts database.

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Waliser, D. E., Jones, C., Schemm, J. E., & Graham, N. E. (1999). A statistical extended-range tropical forecast model based on the slow evolution of the madden-julian oscillation. Journal of Climate, Boston, MA, 12(7), 1918-1939.

Waliser, D. E., Lau, K. M., & Kim, J. (1999; 1999). The influence of coupled sea surface temperatures on the madden-julian oscillation: a model perturbation experiment. World Meteorological Organization, , 181-182.

Waliser, D. E., Lau, K. M., & Kim, J. (1999). The influence of coupled sea surface temperatures on the madden-julian oscillation: a model perturbation experiment. Journal of the Atmospheric Sciences, Boston, MA, 56(3), 333-358.

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PSD MJO Publications

  • Guan B., D. E. Waliser, N. P. Molotch, E. J. Fetzer and P. J. Neiman (February 2012): Does the Madden-Jul ian Oscillation influence wintertime atmospheric rivers and snowpack in the Sierra Nevada? Mon. Weather Rev ., 140, 325-345. doi:10.1175/MWR-D-11-00087.1
  • Riley E. , B. Mapes and S. Tulich (December 2011): Clouds associated with the Madden-Julian Oscillation: A new perspective from CloudSat. J. Atmos. Sci., 68, 3032-3051. doi:10.1175/JAS-D-11-030.1
  • Gottschalck J., . . . ., K. M. Weickmann, et al. (September 2010): A Framework for Assessing Operational Madden-Julian Oscillation Forecasts: A CLIVAR MJO Working Group Project. Bull. Am. Meteorol. Soc., 91 (9), 1247-1258. doi:10.1175/2010BAMS2816.1
  • Serra Y. L., G. N. Kiladis and K. I. Hodges (September 2010): Tracking and Mean Structure of Easterly Wav es over the Intra-Americas Sea. J. Climate, 23 (18), 4823-4840. doi:10.1175/2010JCLI3223.1
  • Janicot S., F. Mounier, S. Gervois, B. Sultan and G. N. Kiladis (July 2010): The Dynamics of the West Afr ican Monsoon. Part V: The Detection and Role of the Dominant Modes of Convectively Coupled Equatorial Rossby Waves. J. Climate, 23 (14), 4005-4024. doi:10.1175/2010jcli3221.1
  • Kim D., K. R. Sperber, W. Stern, D. E. Waliser, I.S. Kang, E. Maloney, W. Wang, K. M. Weickmann, J. Benedi ct, M. Khairoutdinov, M.-I. Lee, R. Neale, M. Suarez, K. Thayer-Calder and G. Zhang (December 2009): Applic ation of MJO Simulation Diagnostics to Climate Models. J. Climate, 22 (23), 6413-6436. doi:10.1175/2009 JCLI3063.1
  • Lin J. L., T. Shinoda, B. Liebmann, T. Qian, W. Han, P. E. Roundy, J. Zhou and Y. Zheng (September 2009): Intraseasonal Variability Associated with Summer Precipitation over South America Simulated by 14 IPCC AR4 Coupled GCMs. Mon. Weather Rev., 137 (9), 2931-2954. doi:10.1175/2009MWR2777.1
  • Newman M., P. D. Sardeshmukh and M. C. Penland (June 2009): How Important Is Air-Sea Coupling in ENSO and MJO Evolution? J. Climate, 22 (11), 2958-2977. doi:10.1175/2008JCLI2659.1
  • Waliser D. E., K. R. Sperber, . . . ., K. M. Weickmann and al. et (June 2009): MJO Simulation Diagnostics . J. Climate, 22 (11), 3006-3030. doi:10.1175/2008JCLI2731.1
  • Weickmann K. and E. Berry (May 2009): The Tropical Madden-Julian Oscillation and the Global Wind Oscillat ion. Mon. Weather Rev., 137 (5), 1601-1614. doi:10.1175/2008MWR2686.1
  • Janicot S., F. Mounier, N. M. Hall, S. Leroux, B. Sultan and G. N. Kiladis (March 2009): Dynamics of the West African Monsoon. Part IV: Analysis of 25-90-Day Variability of Convection and the Role of the Indian Mo nsoon. J. Climate, 22 (6), 1541-1565. doi:10.1175/2008JCLI2314.1
  • Lin J., B. E. Mapes, K. M. Weickmann, G. N. Kiladis, et al. (June 2008): North American Monsoon and Conve ctively Coupled Equatorial Waves Simulated by IPCC AR4 Coupled GCMs. J. Climate, 21 (12), 2919-2937. do i:10.1175/2007JCLI1815.1
  • Shinoda T., P. E. Roundy and G. N. Kiladis (May 2008): Variability of Intraseasonal Kelvin Waves in the E quatorial Pacific Ocean. J. Phys. Oceanogr., 38 (5), 921-944. doi:10.1175/2007JPO3815.1
  • Haertel P. T., G. Kiladis, A. Denno and T. M. Rickenbach (March 2008): Vertical-Mode Decompositions of 2- Day Waves and the Madden-Julian Oscillation. J. Atmos. Sci., 65 (3), 813-833. doi:10.1175/2007JAS2314.1
  • Sardeshmukh P. D. and P. Sura (December 2007): Multiscale Impacts of Variable Heating in Climate. J. Cli mate, 20 (23), 5677-5695. doi:10.1175/2007JCLI1411.1
  • Weickmann K. and E. Berry (February 2007): A Synoptic-Dynamic Model of Subseasonal Atmospheric Variabilit y. Mon. Weather Rev., 135 (2), 449-474. doi:10.1175/MWR3293.1
  • Straub K. H., G. N. Kiladis and P. E. Ciesielski (December 2006): The role of equatorial waves in the ons et of the South China Sea summer monsoon and the demise of El Niņo during 1998. Dyn. Atmos. Oceans, 42 (1-4) , doi:10.1016/j.dynatmoce.2006.02.005
  • Roundy P. E. and G. N. Kiladis (October 2006): Observed relationships between oceanic Kelvin waves and at mospheric forcing. J. Climate, 19 (20), 5253-5272. doi:10.1175/JCLI3893.1
  • Lin J., G. N. Kiladis, B. Mapes, K. M. Weickmann, K. R. Sperber, W. Lin, M. C. Wheeler, S. Schubert, A. De l Genio, L. J. Donner, S. Emori, J.-F. Gueremy, F. Hourdin, P. J. Rasch, E. Roeckner and J. F. Scinocca (Ju ne 2006): Tropical Intraseasonal Variability in 14 IPCC AR4 Climate Models. Part I: Convective Signals. J. Climate, 19 (12), 2665-2690. doi:10.1175/JCLI3735.1
  • Lin J.-L., M. Zhang and B. Mapes (July 2005): Zonal Momentum Budget of the Madden-Julian Oscillation: The Source and Strength of Equivalent Linear Damping. J. Atmos. Sci., 62 (7), 2172-2188. doi:10.1175/JAS34 71.1
  • Carvalho, L., C Jones and B. Liebmann (2004), The South Atlantic convergence zone: Intensity, form, persistence, and relationships with intraseasonal to interannual activity and extreme rainfall, Journal of Climate, 17(1), 88-108, 10.1175/1520-0442%282004%29017%3C0088:TSACZI%3E2.0.CO;2. .
  • Kiladis, G. N. and B. E. Mapes (2006), Convective life cycles and scale interactions in tropical waves, Dynamics of Atmospheres and Ocean, 42(1-4), 1-2, 10.1016/j.dynatmoce.2006.07.001. .
  • Kiladis, G. N., K. Straub and P. Haertel (2005), Zonal and vertical structure of the Madden-Julian oscillation, Journal of the Atmospheric Sciences, 62(8), 2790-2809, 10.1175/JAS3520.1..
  • Kim, D., K. Sperber, W. Stern, D. Waliser, I. S. Kang, E. Maloney, W. Wang, K. M. Weickmann, J. Benedict, M. Khairoutdinov, M. I. Lee, R. Neale, M. Suarez, K. Thayer-Calder and G. Zhang (2009), Application of MJO Simulation Diagnostics to Climate Models, Journal of Climate, 22(23), 6413-6436, 10.1175/2009jcli3063.1..
  • Liebmann, B., G. N. Kiladis, C. Vera, A. Saulo and L. Carvalho (2004), Subseasonal variations of rainfall in South America in the vicinity of the low-level jet east of the Andes and comparison to those in the South Atlantic convergence zone, Journal of Climate, 17(19), 3829-3842, 10.1175/1520-0442%282004%29017%3C3829:SVORIS%3E2.0.CO;2. .
  • Lin, J. L., G. N. Kiladis, B E Mapes, K. M. Weickmann, K R Sperber, W Lin, M C Wheeler, S D Schubert, A Del Genio, L J Donner, S Emori, J -F Gueremy, F Hourdin, P J Rasch, E Roeckner and J F Scinocca (2006), Tropical intraseasonal variability in 14 IPCC AR4 climate models. Part I: Convective signals, Journal of Climate, 19(12), 2665-2690, 10.1175/JCLI3735.1..
  • Lin, J. L., B. E. Mapes, M. Zhang and M. Newman (2004), Stratiform precipitation, vertical heating profiles, and the Madden-Julian oscillation, Journal of the Atmospheric Sciences, 61(3), 296-309, 10.1175/1520-0469%282004%29061%3C0296:SPVHPA%3E2.0.CO;2..
  • Lin, J. L., T. Shinoda, B. Liebmann, T. T. Qian, W. Q. Han, P. Roundy, J. Y. Zhou and Y. Zheng (2009), Intraseasonal Variability Associated with Summer Precipitation over South America Simulated by 14 IPCC AR4 Coupled GCMs, Monthly Weather Review, 137(9), 2931-2954, 10.1175/2009mwr2777.1..
  • Shinoda, T., P. E. Roundy and G. N. Kiladis (2008), Variability of intraseasonal Kelvin waves in the equatorial Pacific Ocean, Journal of Physical Oceanography, 38(5), 921-944, 10.1175/2007jpo3815.1. .
  • Straub, K. H., G. N. Kiladis and P. E. Ciesielski (2006), The role of equatorial waves in the onset of the South China Sea summer monsoon and the demise of El Nino during 1998, Dynamics of Atmospheres and Ocean, 42(1-4, Sp. Iss. SI), 216-238, 10.1016/j.dynatmoce.2006.02.005. .
  • Waliser, D., K. Sperber, H. Hendon, D. Kim, M. Wheeler, K. M. Weickmann, C. Zhang, L. Donner, J. Gottschalck, W. Higgins, I. S. Kang, D. Legler, M. Moncrieff, F. Vitart, B. Wang, W. Wang, S. Woolnough, E. Maloney, S. Schubert, W. Stern and O. Clivar Madden-Julian (2009), MJO Simulation Diagnostics, Journal of Climate, 22(11), 3006-3030, 10.1175/2008jcli2731.1. .
  • Weickmann, K. M. and E. Berry (2009), The Tropical Madden-Julian Oscillation and the Global Wind Oscillation, Monthly Weather Review, 137(5), 1601-1614, 10.1175/2008mwr2686.1..
  • Weickmann, K. M. and E. Berry (2007), A synoptic-dynamic model of subseasonal atmospheric variability, Monthly Weather Review, 135(2), 449-474, 10.1175/mwr3293.1.
  • Lin, J., B. Mapes, M. Zhang, and M. Newman, 2003: Stratiform precipitation, vertical heating profiles, and the Madden-Julian Oscillation. J. Atmos. Sci., in press.
  • Shinoda, T., and H. H. Hendon, 2002: Rectified wind forcing and latent heat flux produced by the Madden-Julian oscillation. J. Climate., 15, 3500-3508. [Abstract]
  • Shinoda, T., and H. H. Hendon, 2001: Upper ocean heat budget in response to the Madden-Julian Oscillation in the western equatorial Pacific. J. Climate, 14, 4147-4165. [Abstract]
  • Lee, M.-I., I.-S. Kang, J.-K. Kim, and B. E. Mapes, 2001: Influence of cloud-radiation interaction on simulating tropical intraseasonal oscillation with an atmospheric general circulation model. J. Geophys. Res., 106, 14,219-14,233. [Abstract]
  • Hendon, H. H., B. Liebmann, M. E. Newman, J. D. Glick, and J. E. Schemm, 2000: Medium range forecast errors associated with active episodes of the Madden-Julian oscillation. Mon. Wea. Rev., 128, 69-86. [Abstract]
  • Hendon, H. H., C. Zhang, and J. D. Glick, 1999: Interannual variation of the Madden-Julian oscillation during austral summer. J. Climate, 12, 2538-2550. [Abstract]
  • Weickmann, K., and P. Sardeshmukh, 1994: The atmospheric angular momentum budget associated with a Madden-Julian oscillation. J. Atmos. Sci., 51, 3194-3208. [Abstract]
  • Hendon, H. H., 1995: Length of day fluctuations associated with the Madden Julian oscillation. J. Atmos. Sci., 52, 2373-2383. [Abstract]
  • Weickmann, K. M., G. N. Kiladis, and P. D. Sardeshmukh, 1997: The dynamics of intraseasonal atmospheric angular momentum oscillations.J. Atmos. Sci., 54, 1445-1461. [Abstract]
  • Zhang, C., and Hendon, H. H., 1997: On the propagating and standing components of the intraseasonal oscillation in tropical convection. J. Atmos. Sci., 54, 741-752. [Abstract]
  • Hendon, H. H., B. Liebmann, and J. D. Glick, 1998: Oceanic Kelvin waves and the Madden-Julian oscillation. J. Atmos. Sci., 55, 88-101. [Abstract]
  • Hendon, H. H., and B. Liebmann, 1994: Organization of convection within the Madden-Julian Oscillation. J. Geophys. Res., 99, 8073-8083. [Abstract]
  • Liebmann, B., H. H. Hendon, and J. D. Glick, 1994: The relationship between tropical cyclones of the western Pacific and Indian oceans and the Madden-Julian oscillation. J. Meteor. Soc. Japan, 72, 401-412. [Abstract]