« 上一章目录下一章 »

参考文献

[1]  EINSTEIN A. 爱因斯坦全集 第二卷 瑞士时期(1900-1909) [M]. 范岱年, 许良英, 刘兵, 等译. 湖南: 湖南科学技术出版社, 2009: 364

[2]  DIRAC P A M. 狄拉克量子力学原理 [M]. 凌东波 译. 北京: 机械工业出版社, 2018: 112

[3]  SHANNON C E. A symbolic analysis of relay and switching circuits [J]. Transactions of the American Institute of Electrical Engineers, 1938, 57(12): 713-23. DOI:10.1109/T-AIEE.1938.5057767

[4]  HAMPSHIRE D P. A derivation of Maxwell's equations using the Heaviside notation [J]. RSPTA, 2018, 376(2134): 20170447. DOI:10.1098/rsta.2017.0447

[5]  GRIFFITHS D J. 电动力学导论: 翻译版 原书第3版 [M]. 贾瑜, 胡行, 孙强 译. 北京: 机械工业出版社, 2014: 239-240

[6]  PURCELL E M, MORIN D J. 伯克利物理学教程(SI版) 第2卷 电磁学: 翻译版 原书第3版 [M]. 宋峰, 杨嘉, 安双新, 等译. 北京: 机械工业出版社, 2018: 389-390

[7]  FARNES J S. A unifying theory of dark energy and dark matter: Negative masses and matter creation within a modified ΛCDM framework [J]. A&A, 2018, 620: A92. DOI:10.1051/0004-6361/201832898

[8]  SOCAS-NAVARRO H. Can a negative-mass cosmology explain dark matter and dark energy? [J]. A&A, 2019, 626: A5. DOI:10.1051/0004-6361/201935317

[9]  TRETYAKOV N, TERLETSKY A. A unifying hypothesis of dark energy and dark matter: negative masses, imaginary charges and dark minus-photons [J]. PhyS, 2020, 95(7): 075301. DOI:10.1088/1402-4896/ab89f3

[10]  AGHANIM N, AKRAMI Y, ASHDOWN M, et al. Planck 2018 results - VI. Cosmological parameters [J]. A&A, 2020, 641: A6: 15. DOI:10.1051/0004-6361/201833910

[11]  DEVEREUX C. Cosmological Clues: Evidence for the Big Bang, Dark Matter and Dark Energy [M]. Boca Raton: CRC Press, 2020: 102-103

[12]  罗声雄. 数学的魅力: 初等数学概念演绎 [M]. 武汉: 武汉出版社, 1999: 103-169

[13]  OESCH P A, BRAMMER G, VAN DOKKUM P G, et al. A Remarkably Luminous Galaxy at z = 11.1 Measured with Hubble Space Telescope Grism Spectroscopy [J]. ApJ, 2016, 819(2): 129. DOI:10.3847/0004-637X/819/2/129

[14]  BROUT D, SCOLNIC D, POPOVIC B, et al. The Pantheon+ Analysis: Cosmological Constraints [J]. ApJ, 2022, 938(2): 110. DOI:10.3847/1538-4357/ac8e04

[15]  WEINBERG S. 宇宙学 [M]. 向守平 译. 合肥: 中国科学技术大学出版社, 2013: 18

[16]  HILLEBRANDT W, NIEMEYER J C. Type Ia Supernova Explosion Models [J]. ARA&A, 2000, 38(1): 191-230. DOI:10.1146/annurev.astro.38.1.191

[17]  MCMILLAN P J. Mass models of the Milky Way [J]. MNRAS, 2011, 414(3): 2446-57. DOI:10.1111/j.1365-2966.2011.18564.x

[18]  KAFLE P R, SHARMA S, LEWIS G F, et al. Kinematics of the Stellar Halo and the Mass Distribution of the Milky Way Using Blue Horizontal Branch Stars [J]. ApJ, 2012, 761(2): 98. DOI:10.1088/0004-637X/761/2/98

[19]  KAFLE P R, SHARMA S, LEWIS G F, et al. On the Shoulders of Giants: Properties of the Stellar Halo and the Milky Way Mass Distribution [J]. ApJ, 2014, 794(1): 59. DOI:10.1088/0004-637X/794/1/59

[20]  MCMILLAN P J. The mass distribution and gravitational potential of the Milky Way [J]. MNRAS, 2016, 465(1): 76-94. DOI:10.1093/mnras/stw2759

[21]  PHELPS S, NUSSER A, DESJACQUES V. The Mass of the Milky Way and M31 Using the Method of Least Action [J]. ApJ, 2013, 775(2): 102. DOI:10.1088/0004-637X/775/2/102

[22]  VERA-CIRO C A, HELMI A, STARKENBURG E, et al. Not too big, not too small: the dark haloes of the dwarf spheroidals in the Milky Way [J]. MNRAS, 2012, 428(2): 1696-703. DOI:10.1093/mnras/sts148

[23]  JIAO Y J, HAMMER F, WANG H F, et al. Detection of the Keplerian decline in the Milky Way rotation curve [J]. A&A, 2023, 678: A208. DOI:10.1051/0004-6361/202347513

[24]  GILLESSEN S, EISENHAUER F, TRIPPE S, et al. Monitoring Stellar Orbits Around the Massive Black Hole in the Galactic Center [J]. ApJ, 2009, 692(2): 1075. DOI:10.1088/0004-637X/692/2/1075

[25]  GHEZ A M, SALIM S, WEINBERG N N, et al. Measuring Distance and Properties of the Milky Way’s Central Supermassive Black Hole with Stellar Orbits [J]. ApJ, 2008, 689(2): 1044. DOI:10.1086/592738

[26]  KRAVTSOV V V. Globular clusters and dwarf spheroidal galaxies of the outer galactic halo: On the putative scenario of their formation [J]. A&AT, 2001, 20(1): 89-92. DOI:10.1080/10556790108208191

[27]  BEKKI K, FREEMAN K C. Formation of Ω Centauri from an ancient nucleated dwarf galaxy in the young Galactic disc [J]. MNRAS, 2003, 346(2): L11-L5. DOI:10.1046/j.1365-2966.2003.07275.x

[28]  JOHNSON C I, DUPREE A K, MATEO M, et al. The Most Metal-poor Stars in Omega Centauri (NGC 5139) [J]. AJ, 2020, 159(6): 254. DOI:10.3847/1538-3881/ab8819

[29]  ZHOU Y, LI X Y, HUANG Y, et al. The Circular Velocity Curve of the Milky Way from 5–25 kpc Using Luminous Red Giant Branch Stars [J]. ApJ, 2023, 946(2): 73. DOI:10.3847/1538-4357/acadd9

[30]  RUBIN V. Seeing dark matter in the Andromeda galaxy [J]. PhT, 2006, 59(12): 8-9. DOI:10.1063/1.2435662

[31]  VAN ALBADA T S, BAHCALL J N, BEGEMAN K, et al. Distribution of dark matter in the spiral galaxy NGC 3198 [J]. ApJ, 1985, 295: 305-13. DOI:10.1086/163375

[32]  BATYGIN K, BROWN M E. Evidence for a Distant Giant Planet in the Solar System [J]. AJ, 2016, 151(2): 22. DOI:10.3847/0004-6256/151/2/22

[33]  NIETO M M, TURYSHEV S G. Finding the origin of the Pioneer anomaly [J]. CQGra, 2004, 21(17): 4005. DOI:10.1088/0264-9381/21/17/001

[34]  AGHANIM N, AKRAMI Y, ARROJA F, et al. Planck 2018 results - I. Overview and the cosmological legacy of Planck [J]. A&A, 2020, 641: A1. DOI:10.1051/0004-6361/201833880

[35]  ARISTOTLE. 亚里士多德全集 第二卷 [M]. 苗力田, 徐开来 译. 北京: 中国人民大学出版社, 1991: 444,607

[36]  KRAAN-KORTEWEG R C. Galaxies Behind the Milky Way and the Great Attractor [M] // PAGE D, HIRSCH J G. From the Sun to the Great Attractor. astro ph, 2000. DOI:10.48550/arXiv.astro-ph/0006199

[37]  KOCEVSKI D D, EBELING H. On the Origin of the Local Group’s Peculiar Velocity [J]. ApJ, 2006, 645(2): 1043. DOI:10.1086/503666

[38]  JONES M H, LAMBOURNE R J, ADAMS D J, et al. An Introduction to Galaxies and Cosmology [M]. Cambridge: Cambridge University Press, 2004: 298

[39]  丁同仁. 常微分方程 [M]. 北京: 高等教育出版社, 2010: 83-84

[40]  郭士堃. 广义相对论导论 [M]. 成都: 电子科技大学出版社, 2005: 187-189

[41]  赵峥, 刘文彪. 广义相对论基础 [M]. 北京: 清华大学出版社, 2010: 74-75

[42]  WEINBERG S. 引力和宇宙学: 广义相对论的原理和应用 [M]. 邹振隆, 张历宁, 等译. 北京: 高等教育出版社, 2018: 163-168

[43]  LANDAU L D, LIFSHITZ E M. 理论物理学教程 第2卷 场论 第8版 [M]. 鲁欣, 任朗, 袁炳南 译. 北京: 高等教育出版社, 2012: 333-335

[44]  LORENTZ H A. De relatieve beweging van de aarde en den aether [M] // MULLER J. Verslagen der Zittingen VAN DE WIS- EN NATUURKUNDIGE AFDEELING DER KONINKLIJKE AKADEMIE VAN WETENSCHAPPEN van 25 Juni 1892 tot 28 April 1893. Amsterdam: Johannes Muller, 1893: 74-79

[45]  EINSTEIN A. 爱因斯坦全集 第二卷 瑞士时期(1900-1909) [M]. 范岱年, 许良英, 刘兵, 等译. 湖南: 湖南科学技术出版社, 2009: 244

[46]  EINSTEIN A. 爱因斯坦全集 第二卷 瑞士时期(1900-1909) [M]. 范岱年, 许良英, 刘兵, 等译. 湖南: 湖南科学技术出版社, 2009: 243-271

[47]  KITTEL C, KNIGHT W D, RUDERMAN M A, et al. 伯克利物理学教程(SI版) 第1卷 力学: 翻译版 原书第2版 [M]. 陈秉乾, 孟策, 等译. 北京: 机械工业出版社, 2015: 308-309

[48]  EINSTEIN A. 爱因斯坦全集 第二卷 瑞士时期(1900-1909) [M]. 范岱年, 许良英, 刘兵, 等译. 湖南: 湖南科学技术出版社, 2009: 407

[49]  EINSTEIN A. 爱因斯坦全集 第六卷 柏林时期(1914-1917) [M]. 吴忠超 主译. 湖南: 湖南科学技术出版社, 2009: 235,237

[50]  EINSTEIN A. 爱因斯坦全集 第七卷 柏林时期(1918-1921) [M]. 邹振隆, 黄磷 译. 湖南: 湖南科学技术出版社, 2009: 91

[51]  EINSTEIN A. 爱因斯坦全集 第七卷 柏林时期(1918-1921) [M]. 邹振隆, 黄磷 译. 湖南: 湖南科学技术出版社, 2009: 105

[52]  EINSTEIN A. 爱因斯坦全集 第七卷 柏林时期(1918-1921) [M]. 邹振隆, 黄磷 译. 湖南: 湖南科学技术出版社, 2009: 313

[53]  VON LAUE M. Zwei Einwände gegen die Relativitätstheorie und ihre Widerlegung [J]. Physikalische Zeitschrift, 1912, 13: 118-120

[54]  BAMBI C. 广义相对论导论 [M]. 周孟磊 译. 成都: 复旦大学出版社, 2020: 82

[55]  FRENCH A P, TAYLOR E F. An Introduction to Quantum Physics [M]. New York: W. W. Norton & Company, 1978: 109-113

[56]  EINSTEIN A, BORN M. The Born-Einstein Letters: Correspondence Between Albert Einstein and Max and Hedwig Born from 1916-1955, with Commentaries by Max Born [M]. (BORN I, Trans.). United Kingdom: Macmillan, 1971: 91

[57]  GRIFFITHS D J. 量子力学概论: 翻译版 原书第2版 [M]. 贾瑜, 胡行, 李玉晓 译. 北京: 机械工业出版社, 2009: 127-128,278-280

[58]  BELL J S. On the Einstein Podolsky Rosen paradox [J]. Physics Physique Fizika, 1964, 1(3): 195-200. DOI:10.1103/PhysicsPhysiqueFizika.1.195

[59]  WHEELER J A. The "Past" and the "Delayed-Choice" Double-Slit Experiment [M] // MARLOW A R. Mathematical Foundations of Quantum Theory. New York: Academic Press, 1978: 9-48. DOI:10.1016/B978-0-12-473250-6.50006-6

[60]  EINSTEIN A, PODOLSKY B, ROSEN N. Can Quantum-Mechanical Description of Physical Reality Be Considered Complete? [J]. PhRv, 1935, 47(10): 777-80. DOI:10.1103/PhysRev.47.777

[61]  BOHM D, AHARONOV Y. Discussion of Experimental Proof for the Paradox of Einstein, Rosen, and Podolsky [J]. PhRv, 1957, 108(4): 1070-1076. DOI:10.1103/PhysRev.108.1070

[62]  EINSTEIN A, BORN M. The Born-Einstein Letters: Correspondence Between Albert Einstein and Max and Hedwig Born from 1916-1955, with Commentaries by Max Born [M]. (BORN I, Trans.). United Kingdom: Macmillan, 1971: 158

[63]  FEYNMAN R P. Space-Time Approach to Non-Relativistic Quantum Mechanics [J]. RvMP, 1948, 20(2): 367. DOI:10.1103/RevModPhys.20.367

[64]  FEYNMAN R P, HIBBS A R. Quantum Mechanics and Path Integrals [M]. United States: McGraw-Hill, 1965

[65]  HECHT E. 光学 第五版 [M]. 秦克诚, 林福成 译. 北京: 电子工业出版社, 2019: 135,137-138

[66]  Caloz C, Itoh T. Electromagnetic Metamaterials: Transmission Line Theory and Microwave Applications: The Engineering Approach [M]. United States: John Wiley & Sons, 2005: 33

« 上一章目录下一章 »