-
摘要: 在现代物理学研究中,物质的态与相扮演着重要的角色。它们之间既有联系,又有形成时间的不同以及具体涵义的差异。文章把两个概念的认识过程分为三个阶段:(1)贯穿整个19世纪的第一阶段,主题大致可归结为“态与相概念的先后提出”,将围绕当时人们在描述物质存在形式时“从理想气体的克拉珀龙方程到真实体系的范德瓦耳斯模型”展开;(2)19世纪末至20世纪中期的第二阶段,主题是“对相理解的深入”,将从居里—外斯定律的发现出发,重点介绍楞次—伊辛模型的提出及其解;(3)第三阶段为20世纪中期开始的更为系统的相变理论的发展,落脚点是“物性的解析表述”。希望通过这个回顾,能够让人们更加关注杨—李理论这一瑰宝,进而加深对物质的态与相这两个概念以及对相变概念的理解。
-
-
[1] 于渌, 郝柏林, 陈晓松. 边缘奇迹:相变和临界现象. 北京:科学出版社, 2016 [2] 林宗涵. 热力学与统计物理学, 第一版.北京:北京大学出版社, 2007 [3] Ye Q J, Li X Z. Sci. China-Phys. Mech. Astron.,2023, 66(2):227212
[4] Ouyang X Y,Ye Q J,Li X Z. 2023, arXiv:2303.16784
[5] de la Tour C. Annales de chimie et de physique, 1822, 21:178
[6] de la Tour C. Annales de chimie et de physique, 1823, 22:410
[7] Andrews T. Philos. Trans. R. Soc. (London), 1869, 159:575
[8] van der Waals J D. On the Continuity of the Gaseous and Liquid States (doctoral dissertation). Universiteit Leiden, 1873
[9] Gibbs J W. Trans. Conn. Acad. Arts Sci., 1875-1976, 3:108
[10] Gibbs J W. Trans. Conn. Acad. Arts Sci., 1877-1878, 3:343
[11] Curie P. Ann. Chim. Phys., 1895, 5:289
[12] Weiss P. J. Phys. (Paris), 1907, 6:667
[13] Langevin P. J. Phys. (Paris), 1905, 4:678
[14] Langevin P.Ann. Chim. Phys., 1905, 5:70
[15] Stern O. Z. Phys., 1920, 1:147
[16] Thomson J J. The Electrician, 1897, 39:104
[17] Rutherford E. Lond. Edinb. Dublin Philos. Mag. J. Sci., 1911, 21:125
[18] Born M. Dynamik der Kristallgitter. Leipzig und Berlin:B. G. Teubner Press, 1915
[19] Lenz W. Phys. Z., 1920, 21:613
[20] Ising E. PhD Thesis, University of Hamburg, 1924
[21] Ising E. Z. Phys., 1925, 31:253
[22] Heisenberg W. Z. Phys., 1928, 49:619
[23] Pauli W. Les theories quantiques du magnetisme:l'electron magnetique, in Insitut International de Physique Solvay. Paris:Gauthier-Villars, 1932
[24] van Vleck J H. The Theory of Electric and Magnetic Susceptibilities. New York:Oxford University Press, 1932
[25] Peierls R. Proc. Cambridge Phil. Soc., 1936, 32:477
[26] Kramers H A, Wannier G H. Phys. Rev., 1941, 60:252
[27] Kramers H A, Wannier G H. Phys. Rev., 1941, 60:263
[28] Onsager L. Phys. Rev., 1944, 65:117
[29] Kaufman B. Phys. Rev., 1949, 76:8
[30] Yang C N. Phys. Rev., 1952, 85:808
[31] Yang C N, Lee T D. Phys. Rev., 1952, 87:404
[32] Lee T D, Yang C N. Phys. Rev., 1952, 87:410
[33] Fisher M E. Lecture in Theoretical Physics, vol. VII C. Boulder:University of Colorado Press, 1965
[34] Fisher M E. Rep. Prog. Phys., 1967, 30:615
[35] Wilson K G. Rev. Mod. Phys., 1975, 47:773
[36] Wilson K G. Rev. Mod. Phys., 1983, 55:583
[37] Peng X, Zhou H, Wei B B et al. Phys. Rev. Lett., 2015, 114:010601
[38] Wei B B, Liu R B, Yang L. Phys. Rev. Lett., 2012, 109:185701
[39] Heyl M. Rep. Prog. Phys.,2018,81:054001
[40] Heyl M,Polkovnikov A,Kehrein S. Phys. Rev. Lett., 2013, 110:135704
[41] Brandner K, Maisi V F, Pekola J P et al. Phys. Rev. Lett., 2017, 118:180601
[42] Francis A, Zhu D, Alderete C H et al. Science Advances, 2021, 7:eabf2447
[43] Kuzmak A R,Tkachuk V M. EPL, 2019, 125:10004
[44] Fläschner N, Vogel D, Tarnowski M et al. Nature Phys., 2018, 14:265
[45] Li X Z, Probert M I J, Alavi A et al. Phys. Rev. Lett., 2010, 104:066102
[46] Li X Z, Walker B, Michaelides A. Proc. Natl. Acad. Sci. USA, 2011, 108:6369
[47] Chen J, Li X Z, Zhang Q F et al. Nat. Commun., 2013, 4:2064
[48] Zhang X W, Wang E G, Li X Z. Phys. Rev. B, 2018, 98:134110
[49] Zhu Y C, Yang S, Zeng J X et al. J. Am. Chem. Soc., 2022, 144:21356
-
期刊类型引用(1)
1. 邓妙怡,李新征. 热力学第三定律的发现过程及内涵浅析. 物理. 2024(11): 777-784 . 本站查看
其他类型引用(1)
计量
- 文章访问数: 721
- HTML全文浏览量: 98
- PDF下载量: 1575
- 被引次数: 2