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Modern Physics  2022, Vol. 34 Issue (2): 3-10    DOI:
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. [J]. Modern Physics, 2022, 34(2): 3-10.
 
[1] P. W. Anderson,"More is Different-Broken Symmetry and Nature of Hierarchical Structure of Science", Science, 177, 393 (1972).
[2] C. Koch and G. Laurent,"Complexity and the Nervous System", Science, 284, 96 (1999).
[3] M. J. Jacobson, J.A. Levin, and M. Kapur, Educational Researcher, 48, 112 (2019).
[4] R. Gallagher and T. Appenzeller,"Beyond Reductionism", Science, 48, 112 (1999).
[5] J. W. Gibbs,"Elementary Principles in Statistical Mechanics", Yale University Press (1902).
[6] A. Einstein,"Kinetische Theorie der Wärmegleichgewichtes und des zweiten Hauptsatzes der Thermodynamik, Annalen der Physik", 9, 417 (1902).
[7] A. Einstein,"Eine Theorie der Grundlagen der Thermodynamik", Annalen der Physik, 11, 170 (1903).
[8] A. Einstein,"Zur allgemeinen molekularen Theorie der Wärme", Annalen der Physik, 14, 354 (1904).
[9] L. Navarro,"Gibbs, Einstein and the Foundation of Statistical Me chanics", Arch. Hist. Exact Sci. 53, 147 (1998).
[10] L. Peliti and R. Rechtman,"Einstein's Approach to Statistical Me chanics:The 1902-04 Papers", J. Stat. Phys. 167, 1020 (2017).
[11] A. Einstein,"Quantentheorie des einatomigen idealen Gases", Sit zungsberichte der Preussischen Akademie der Wissenschaften (Berlin), Physikalish-Mathematische Klasse, 261 (1924).
[12] E. Ising,"Beitrag Zur Theorie des Ferromagnetismus", Z. Physik 31, 253 (1925).
[13] 汪卫华,"非晶态物质的本质和特性", 物理学进展, 33,177 (2013).
[14] S. F. Edwards and P. W. Anderson,"Theory of spin glasses", Jour nal of Physics F:Metal Physics, 5, 965 (1975).
[15] M. Mézard, G. Parisi G, and M. A. Virasoro,"Spin glass theory and beyond:An Introduction to the Replica Method and Its Appli cations", World Scientific Publishing Company, 1987.
[16] D. Sherrington and S. Kirkpatrick,"Solvable model of a spin glass", Physical Review Letters, 35, 1792 (1975).
[17] G. Parisi,"Infinite number of order parameters for spin-glasses", Physi cal Review Letters, 43, 1754 (1979).
[18] G. Parisi and Y. S. Wu,"Perturbation theory without gauge fixing". Sci. Sin, 24, 483 (1981).
[19] G.K. Hu, T. Liu, M.X. Liu, W. Chen, X.S. Chen,"Condensation of eigen microstate in statistical ensemble and phase transition", Sci China Phys Mech, 62, 990511 (2019).
[20] Y. Sun, Y. Zhang, B. Lu, Z. Lu, J. Fan, X. Li, Q. Deng, X. Chen, "Eigen microstates and their evolutions in complex systems", Commun. Theor. Phys. 73, 065603 (2021).
[21] X. Chen, N. Ying, D. Chen, Y. Zhang, B. Lu, J. Fan, X. Chen,"Ei gen microstates and their evolution of global ozone at different geopotential heights", Chaos, 31, 071102 (2021).
[22] X. Li, T. Xue, Y. Sun, J. Fan, H. Li, M. Liu, Z. Han, Z. Di, and X. Chen,"Discontinous and continuous transitions of collective be havior in living systems", Chin. Phys. B 30, 128703 (2021).
[23] S. Solomon, et al.,"Climate Change 2007:The Physical Science Basis, Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change", Cam bridge University Press (New York, 2007).
[24] S. Manabe and R. Wetherald,"Thermal Equilibrium of the Atmo sphere with a Given Distribution of Relative Humidity", Journal of the Atmospheric Sciences, 24, 241 (1967).
[25] S. Manabe and R. Wetherald,"The Effects of Doubling the CO2 Concentration on the climate of a General Circulation Model". Journal of the Atmospheric Sciences, 32, 3 (1975).
[26] S. Manabe and K. Bryan,"Climate Calculations with a Combined Ocean-Atmosphere Model", Journal of the Atmospheric Sciences, 26, 786 (1969).
[27] R. Stouffer and S. Manabe,"Response of a Coupled Ocean-Atmo sphere Model to Increasing Atmospheric Carbon Dioxide:Sensitiv ity to the Rate of Increase", Journal of Climate, 12, 2224 (1999).
[28] K. Hasselmann,"Stochastic climate models Part I. Theory", Tellus, 28, 473 (1976).
[29] K. Hasselmann K,"On the Signal-to-Noise Problem in Atmospher ic Response Studies. In:Meteorology of Tropical Oceans. Ed. by D.B. Shaw. London:Roy Meteorol Soc., 251 (1979).
[30] J. Li and W. Huang,"Paradim shift in science with tackling global challenges", National Science Review 6, 1091 (2019).
[31] W. Steffen et al.,"The emergence and evolution of Earth System Science", Natural Reviews Earth & Environment 1, 54 (2020).
[32] M. Ghil and V. Lucarini,"The physics of climate variability and cli mate change", Reviews of Modern Physics 92, 035002 (2020).
[33] M. S. Williamson et al.,"Emergent constraints on climate sensitivi ties", Reviews of Modern Physics 93, 025004 (2021).
[34] R. Colman and B. J. Soden,"Water vapor and lapse rate feedbacks in the climate system", Reviews of Modern Physics 93, 045002 (2021).
[35] M. S. Singh and M E. O' Neill,"The climate system and the sec ond law of thermodynamics", Reviews of Modern Physics 94, 015001 (2022).
[36] J. Fan, J. Meng, J. Ludescher, X. Chen, Y. Ashkenazy, J. Kurths, S. Havlin, H. Schellnhuber,"Statistical physics approaches to the complex Earth system", Physics Reports 896, 1 (2021).
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