Persian References:
-Moradi, M., 2020. Evolution of polar stratospheric vortex during major sudden stratospheric warming in 1979-2019, Journal of the Earth and Space Physics, v. 46(3), p. 603-620.
-Moradi, M., 2021. Investigation of the life cycle of the major sudden stratospheric warming in the Northern Hemisphere, Journal of Geography and Environmental Hazards, v. 36, p. 105-120.
-Sharie, Z. and Bidokhti, A.A., 2014. Study of atmospheric total ozone variations due to winter synoptic scale disturbances over Iran, Journal of the Earth and Space Physics, v. 40(4), p. 139-154.
English References:
-Ageyeva, V., Gruzdev, A.N., Elokhov, A.S., Mokhov, I.I. and Zueva, N.E., 2017. Sudden Stratospheric Warmings: Statistical Character is tics and Influence on NO2 and O3 Total Contents, Atmospheric and Oceanic Physics: 2017, v. 53(5), p. 477-486.
-Ahrens, C.D., 2009. Meteorology Today: An Introduction to Weather, Climate, and the Environment, Ninth Edition. 2009, 2007 Brooks/Cole, Cengage Learning, 620 p.
-Brewer, A.W., 1949. Evidence for a world circulation provided by measurements of helium and water vapor distribution in the strato-sphere: Q. J. Roy. Meteorol. Soc., v. 75, p. 351-363.
-Castilllon, A.O., 2014. The evolution of the Brewer-Dobson circulation and the ozone layer during the last three decades: Thesis to get the degree of a doctor of philosophy. Universitat de Barcelona, 104 p.
-Castanheira, J.M., Peevey, T.R., Marques, C.A.F. and Olsen, M.A., 2012. Relationships between Brewer-Dobson circulation, double tropopauses, ozone and stratospheric water vapour: Atmos. Chem. Phys., v. 12, p. 10195-10208.
-Chapman, S., 1930. A theory of upper atmospheric ozone: Mem. Roy. Meteorol. Soc., v. 3, 103 p.
-Chalapathi, G.V., Eswaraiah, S., Prasanth, P.V., Lee, J., Kumar, K.N. and Kim, Y.H, 2018. Unusual Changes in Stratospheric Ozone and Water Vapor Over Antarctica and its Relation to Mesosphere Dynamics during a Minor Sudden Stratosphere Warming: International Journal of Current Research and Review, v. 10, p. 53-58.
-Dobson, G.M., 1956. Origin and distribution of the polyatomic molecules in the atmosphere: Proc. Roy. Soc. Ldn., A236, p. 187-193.
-Douglass, A.R., Newman, P.A. and Solomon, S., 2014.The antractic ozone hole: An update: Physics Today, v. 67, p. 42-48.
-Gerber, E.P., 2012. Stratospheric versus Tropospheric Control of the Strength and Structure of the Brewer–Dobson Circulation: Journal of atmospheric sciences, v. 69, p. 2857-2877.
-Hong, H.J. and Reichler, T., 2020. Local and Remote Response of Ozone to Arctic Stratospheric Circulation Extremes: Atmospheric Chemistry and Physics.
https://doi.org/10.5194/acp-2020-790.
-Holton, J.R., Haynes, P.H., McIntyre, M.E., Douglass, A.R., Rood, R.B. and Pfister, L., 1995. Stratosphere-troposphere exchange: Rev. Geophys., v. 33, p. 403-439.
-Limpasuvan, V., Thompson, D.W.J. and Hartmann, D.L., 2004. The life cycle of the northern hemisphere sudden stratospheric warmings: Journal of climate, v. 17, p. 2584-2596.
-Linz, M., Abalos, M., Glanville, A.S., Kinnison, D.E, Ming, A. and Neu, J.L., 2019. The global diabatic circulation of the stratosphere as a metric forthe Brewer–Dobson circulation. Atmos: Chem. Phys., v. 19, p. 5069-5090.
-Longematz, U., 2019. Stratospheric ozone: down and up through the Anthropocene: ChemTexts https://doi.org/10.1007/s40828-019-0082-7
-Madhu, V., 2016. Effects of Sudden Stratospheric Warming Events on the Distribution of Total Column Ozone over Polar and Middle Latitude Regions: Open Journal of Marine Science, v. 6, p. 302-316.
-Rao, J., Ren, R., Chen, H., Yu, Y. and Zhou, Y., 2018. The stratospheric sudden warming event in February 2018 and its prediction by a climate system model: Journal of geophysics research atmospheric, v. 123, p. 13332-13345.
-Shin, D., Song, S., Ryoo, S.B. and Lee, S.S, 2020. Variations in Ozone Concentration over the Mid-Latitude Region Revealed by Ozonesonde Observations in Pohang: South Korea. Atmosphere, v. 11, 746 p.
-Tweedy, O.V., Limpasuvan, V., orsolini, Y.J., Smith, A.K., Garcia, R.R., Kinnison, D., Randall, C.E., Kvissel, O.K., Stordal, F., Harvey, L. and Chandran, A., 2013. Nighttime secondary ozone layer during major stratospheric sudden warming’s in specified-dynamics WACCM: Journal of geophysical research atmospheres, v. 118, p. 8346-8358.
-Weber, M., Dikty, S., Burrows, J.P., Garnt, H., Dameris, M., Kubin, A., Abalichin, L. and Langematz, U., 2011. The Brewer-Dobson circulation and total ozone from seasonal to decadal time scales: Atmos. Chem. Phys., v. 11, p. 11221-11235.
-Weber, M., Coldewey-Egbers, M., Fioletov, V.E., Frith, S.M., Wild, J.D., Burrows, J.P., Long, C.S. and Loyola, D., 2018. Total ozone trends from 1979 to 2016 derived from five merged observational datasets–the emergence into ozone recovery: Atmos. Chem. Phys., v. 18, p. 2097-2117.
-Yamazaki, Y. and Matthias, V., 2019. Large-amplitude quasi-10-day waves in the middle atmosphere during final warming’s: Journal of Geophysical Research: Atmospheres, v. 124(17-18), p. 9874-9892.