References
1. Gribbin, D. (1980). Climate change (p. 360). Leningrad: Gidrometeoizdat.
2. Huybers, P., & Curry, W. (2006). Links between annual, Milankovitch, and continuum
temperature variability. Nature, 441, 329–332.
3. Kondrat’ev, K. J. (1992). Global climate (p. 359). Saint-Petersburg: Nauka.
4. Stocker, T. F., Qin, D., Plattner, G.-K., Tignor, M., Allen, S. K., Boschung, J., et al. (Eds.).
(2013). Climate change 2013; IPCC, The physical science basis. Contribution of Working
Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change
(p. 1535). Cambridge: Cambridge University Press.
5. Bronnimann, S., Stickler, A., Griesser, T., Fisher, A. M., Grant, A., Ewen, T., et al. (2009).
Variability of large-scale atmospheric circulation indices for the Northern Hemisphere during
the past 100 years. Meteorologische Zeitschrift, 18(4), 379–396.
6. Allan, R. J., & Ansell, T. J. (2006). A new globally-complete monthly historical gridded mean
sea level pressure data set (HadSLP2): 1850–2004. Journal of Climate, 19, 5816–5846.
7. Jones, P. D., Lister, D. H., Osborn, T. J., Harpham, C., Salmon, M., & Morice, C. P. (2012).
Hemispheric and large-scale land surface air temperature variations: An extensive revision
and an update to 2010. Journal of Geophysical Research, 117, D05127. https://doi.org/10.
1029/2011JD017139.
8. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2012). On El Niño as a
consequence of the global oscillation in the dynamics of the Earth’s climatic system. Doklady
Earth Sciences, 446(1), 1089–1094.
9. Neelin, J. D., Battisti, D. S., Hirst, A. C., Jin, F.-F., Wakata, Y., Yamagata, T., et al. (1998).
ENSO theory. Journal of Geophysical Research, 103(C7), 14261–14290.
10. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2009). On the spatial
nonuniformity of some parameters of the modern climate. Doklady Earth Sciences, 426(1),
705–709.
11. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2011). Phase variability of
some characteristics of the present-day climate in the northern Atlantic region. Doklady Earth
Sciences, 438(2), 887–892.
12. Kozlenko, S. S., Mokhov, I. I., & Smirnov, D. A. (2009). Analysis of the cause and effect
relationships between El Niño in the Pacific and its analog in the equatorial Atlantic. Izvestiya,
Atmospheric and Oceanic Physics, 45(6), 704–713.
13. Steinman, B. A., Mann, M. E., & Miller, S. K. (2015). Atlantic and Pacific multidecadal
oscillations and Northern Hemisphere temperatures. Science, 347(6225), 988–991.
14. Wyatt, M. G., Kravtsov, S., & Tsonis, A. A. (2012). Atlantic multidecadal oscillation and
Northern Hemisphere’s climate variability. Climate Dynamics, 38, 929–949. https://doi.org/
10.1007/s00382-011-1071-8.
15. Zhang, L., Wang, C., & Wu, L. (2012). Low-frequency modulation of the Atlantic warm pool
by the Atlantic multidecadal oscillation. Climate Dynamics, 39, 1661–1671. https://doi.org/
10.1007/s00382-011-1257-0.
16. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2011). On global scale of El
Niño events within the Earth climatic system. Recent problems of the Earth observation from
space. 8(4), 200–208 (in Russian).
17. Anisimov, M. V., Byshev, V. I., Zalesny, V. B., Moshonkin, S. N., Neiman, V. G., Romanov,
Y. A., et al. (2012). On inter-decadal variability of ocean and atmosphere characteristics in the
Northern Atlantic. Recent problems of the Earth observation from space. 9(2), 304–311
(in Russian).
18. Petrosjants, M. A., Semenov, E. K., & Gushchina, D. J. (2005). Atmospheric circulation in
tropics: Climate and its variability (p. 640). Moscow: Maks Press.
19. Kao, H.-Y., & Yu, J.-Y. (2009). Contrasting Eastern-Pacific and Central-Pacific types of
ENSO. Journal of Climate, 22, 615–632. https://doi.org/10.1175/2008JCLI2309.1.
The Global Atmosphere Oscillations in the Context …
359
1. Gribbin, D. (1980). Climate change (p. 360). Leningrad: Gidrometeoizdat.
2. Huybers, P., & Curry, W. (2006). Links between annual, Milankovitch, and continuum
temperature variability. Nature, 441, 329–332.
3. Kondrat’ev, K. J. (1992). Global climate (p. 359). Saint-Petersburg: Nauka.
4. Stocker, T. F., Qin, D., Plattner, G.-K., Tignor, M., Allen, S. K., Boschung, J., et al. (Eds.).
(2013). Climate change 2013; IPCC, The physical science basis. Contribution of Working
Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change
(p. 1535). Cambridge: Cambridge University Press.
5. Bronnimann, S., Stickler, A., Griesser, T., Fisher, A. M., Grant, A., Ewen, T., et al. (2009).
Variability of large-scale atmospheric circulation indices for the Northern Hemisphere during
the past 100 years. Meteorologische Zeitschrift, 18(4), 379–396.
6. Allan, R. J., & Ansell, T. J. (2006). A new globally-complete monthly historical gridded mean
sea level pressure data set (HadSLP2): 1850–2004. Journal of Climate, 19, 5816–5846.
7. Jones, P. D., Lister, D. H., Osborn, T. J., Harpham, C., Salmon, M., & Morice, C. P. (2012).
Hemispheric and large-scale land surface air temperature variations: An extensive revision
and an update to 2010. Journal of Geophysical Research, 117, D05127. https://doi.org/10.
1029/2011JD017139.
8. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2012). On El Niño as a
consequence of the global oscillation in the dynamics of the Earth’s climatic system. Doklady
Earth Sciences, 446(1), 1089–1094.
9. Neelin, J. D., Battisti, D. S., Hirst, A. C., Jin, F.-F., Wakata, Y., Yamagata, T., et al. (1998).
ENSO theory. Journal of Geophysical Research, 103(C7), 14261–14290.
10. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2009). On the spatial
nonuniformity of some parameters of the modern climate. Doklady Earth Sciences, 426(1),
705–709.
11. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2011). Phase variability of
some characteristics of the present-day climate in the northern Atlantic region. Doklady Earth
Sciences, 438(2), 887–892.
12. Kozlenko, S. S., Mokhov, I. I., & Smirnov, D. A. (2009). Analysis of the cause and effect
relationships between El Niño in the Pacific and its analog in the equatorial Atlantic. Izvestiya,
Atmospheric and Oceanic Physics, 45(6), 704–713.
13. Steinman, B. A., Mann, M. E., & Miller, S. K. (2015). Atlantic and Pacific multidecadal
oscillations and Northern Hemisphere temperatures. Science, 347(6225), 988–991.
14. Wyatt, M. G., Kravtsov, S., & Tsonis, A. A. (2012). Atlantic multidecadal oscillation and
Northern Hemisphere’s climate variability. Climate Dynamics, 38, 929–949. https://doi.org/
10.1007/s00382-011-1071-8.
15. Zhang, L., Wang, C., & Wu, L. (2012). Low-frequency modulation of the Atlantic warm pool
by the Atlantic multidecadal oscillation. Climate Dynamics, 39, 1661–1671. https://doi.org/
10.1007/s00382-011-1257-0.
16. Byshev, V. I., Neiman, V. G., Romanov, Y. A., & Serykh, I. V. (2011). On global scale of El
Niño events within the Earth climatic system. Recent problems of the Earth observation from
space. 8(4), 200–208 (in Russian).
17. Anisimov, M. V., Byshev, V. I., Zalesny, V. B., Moshonkin, S. N., Neiman, V. G., Romanov,
Y. A., et al. (2012). On inter-decadal variability of ocean and atmosphere characteristics in the
Northern Atlantic. Recent problems of the Earth observation from space. 9(2), 304–311
(in Russian).
18. Petrosjants, M. A., Semenov, E. K., & Gushchina, D. J. (2005). Atmospheric circulation in
tropics: Climate and its variability (p. 640). Moscow: Maks Press.
19. Kao, H.-Y., & Yu, J.-Y. (2009). Contrasting Eastern-Pacific and Central-Pacific types of
ENSO. Journal of Climate, 22, 615–632. https://doi.org/10.1175/2008JCLI2309.1.
The Global Atmosphere Oscillations in the Context …
359
