Ссылки на литературу

[1] Milonni, P. W., An Introduction to Quantum Optics and Quantum Fluctuations, 1st ed.; Oxford University PressOxford: 2019.
[2] Wilczek, F. Physics Today 2001, 54, 12–13.
[3] Wesson, P. S. Space Science Reviews 1980, 27, 109–153.
[4] Milonni, P. W.; Shih, M. .-. American Journal of Physics 1991, 59, 684–698.
[5] Planck, M. Ann. Phys. 1912, 342, 642–656.
[6] Milonni, P. W., The quantum vacuum: an introduction to quantum electrodynamics; Academic press: 1993.
[7] Mehra, J., The Golden Age of Theoretical Physics: (Boxed Set of 2 Volumes); WORLD SCIENTIFIC: 2001.
[8] Kragh, H. Astronomy & Geophysics 2012, 53, 1.24–1.26.
[9] Scully, M. O.; Zubairy, M. S., Quantum optics; Cambridge University Press: Cambridge ; New York, 1997; 630 pp.
[10] Dirac, P. A. M. Proc. R. Soc. Lond. A 1927, 114, 243–265.
[11] Kragh, H., Dirac: a scientific biography; Cambridge University Press: 1990.
[12] Feynman, R. P., QED: The strange theory of light and matter ; Princeton University Press: 1985; Vol. 90.
[13] Maldacena, J.; Susskind, L. Fortschritte der Physik 2013, 61, 781–811.
[14] Hooft, G. In Basics and Highlights in Fundamental Physics; World Scientific: 2001, pp 72–100.
[15] Bigatti, D.; Susskind, L. In Strings, branes and gravity; World Scientific: 2001, pp 883–933.
[16] Wheeler, J. A. Annals of Physics 1957, 2, 604–614.
[17] Hawking, S. W. Phys. Rev. D 1996, 53, 3099–3107.
[18] Anderson, C. D. Science 1932, 76, 238–239.
[19] Sauter, F. Z. Physik 1931, 69, 742–764.
[20] Schwinger, J. Phys. Rev. 1951, 82, 664–679.
[21] Berdyugin, A. I. et al. Science 2022, 375, Publisher: American Association for the Advancement of Science, 430–433.
[22] Schmitt, A.; Vallet, P.; Mele, D.; Rosticher, M.; Taniguchi, T.; Watanabe, K.; Bocquillon, E.; Fève, G.; Berroir, J. M.; Voisin, C.; Cayssol, J.; Goerbig, M. O.; Troost, J.; Baudin, E.; Plaçais, B. Nat. Phys. 2023, 19, 830–835.
[23] Mignani, R. P.; Testa, V.; Caniulef, D. G.; Taverna, R.; Turolla, R.; Zane, S.; Wu, K.; Curto, G. L. Evidence of vacuum birefringence from the polarisation of the optical emission from an Isolated Neutron Star, 2018.
[24] STAR Collaboration et al. Phys. Rev. Lett. 2021, 127, Publisher: American Physical Society, 052302.
[25] Lamb Jr, W. E.; Retherford, R. C. Physical Review 1947, 72, 241.
[26] G, C. H. B. Proc. Kon. Ned. Akad. Wet. 1948, 51, 793.
[27] Lamoreaux, S. K. Physical Review Letters 1997, 78, 5.
[28] Bordag, M.; Mohideen, U.; Mostepanenko, V. M. Physics Reports 2001, 353, 1–205.
[29] Dodonov, V. Physics 2020, 2, 67–104.
[30] Moore, G. T. Journal of Mathematical Physics 1970, 11, 2679–2691.
[31] Wilson, C. M.; Johansson, G.; Pourkabirian, A.; Simoen, M.; Johansson, J. R.; Duty, T.; Nori, F.; Delsing, P. Nature 2011, 479, Number: 7373 Publisher: Nature Publishing Group, 376–379.

[32] Lähteenmäki, P.; Paraoanu, G.; Hassel, J.; Hakonen, P. J. Proceedings of the National Academy of Sciences 2013, 110, 4234–4238.
[33] Vezzoli, S.; Mussot, A.; Westerberg, N.; Kudlinski, A.; Dinparasti Saleh, H.; Prain, A.; Biancalana, F.; Lantz, E.; Faccio, D. Communications Physics 2019, 2, 84.
[34] Somers, D. A. T.; Garrett, J. L.; Palm, K. J.; Munday, J. N. Nature 2018, 564, 386–389.
[35] Kirchhoff, G. The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science 1860, 20, 1–21.
[36] Einstein, A. Annalen der Physik 1905, 17, 132–148.
[37] Millikan, R. A. Physical Review 1916, 7, 355.
[38] Lehnert, B. Journal of Electromagnetic Analysis and Applications 2014, 06, Number: 10 Publisher: Scientific Research Publishing, 319.
[39] Bethe, H. A. Phys. Rev. 1947, 72, Publisher: American Physical Society, 339–341.
[40] Casimir, H. B. G.; Polder, D. Phys. Rev. 1948, 73, 360–372.
[41] Dirac, P. A. M. Proc. R. Soc. Lond. A 1928, 117, 610–624.
[42] Breit, G.; Wheeler, J. A. Physical Review 1934, 46, 1087.
[43] Pike, O.; Hill, E.; Rose, S.; Mackenroth, F. In APS Division of Plasma Physics Meeting Abstracts, 2014; Vol. 2014, UO7–007.
[44] Anderson, P. W. Physical Review 1963, 130, 439.
[45] Sakharov, A. D. Sov.Phys.Dokl. 1967.
[46] Thorne, K. S.; Wheeler, J. A.; Misner, C. W., Gravitation; Freeman San Francisco, CA: 1971.
[47] Shanahan, P.; Detmold, W. Physical Review Letters 2019, 122, 072003.
[48] Burkert, V. D.; Elouadrhiri, L.; Girod, F. X. Nature 2018, 557, 396–399.
[49] Wilczek, F. Open Physics 2012, 10, DOI: 10.2478/s11534-012-0121-0.
[50] Cho, A. Science Magazine 2010, 201004.
[51] Haramein, N. In Liege, (Belgium), 2010, pp 95–100.
[52] Haramein, N. 2013, DOI: 10.31219/osf.io/5ed8c.
[53] Yukawa, H. Proceedings of the Physico-Mathematical Society of Japan. 3rd Series 1935, 17, 48–57.
[54] Dirac, P. A. M. Nature 1951, 168, 906–907.
[55] Haramein, N.; Rauscher, E. A. 2004.
[56] Karsch, F. In Lectures on quark matter ; Springer: 2002, pp 209–249.
[57] Maiani, L. 2004.
[58] Rafelski, J. The European Physical Journal Special Topics 2020, 229, 1–140.
[59] Rohlf, J. W.; Collings, P. J. Review Of” Modern Physics 1994, 12, 1–1994.
[60] Carr, B. J.; Rees, M. J. Nature 1979, 278, 605–612.
[61] Bekenstein, J. D. Phys. Rev. D 1981, 23, 287–298.
[62] Wheleer, J. Zurek (ed.) Complexity, Entropy and the Physics of Information, Addison-Wesley 1990.
[63] Bekenstein, J. D. Phys. Rev. D 1973, 7, 2333–2346.
[64] Gertsenshtein, M. Sov Phys JETP 1962, 14, 84–85.
[65] Landau, L. D.; Lifshits, E. M.; Lifshits, E. M., Mechanics; CUP Archive: 1960; Vol. 1.
[66] Zel’dovich, Y. B. Zh. Eksp. Teor. Fiz 1973, 65, 1311.
[67] Schwarzschild, K. Sitzungsberichte der königlich preuftischen Akademie der Wissenschaften zu Berlin 1916, 424–434.

[68] Yuan, G.-W.; Lei, L.; Wang, Y.-Z.; Wang, B.; Wang, Y.-Y.; Chen, C.; Shen, Z.-Q.; Cai, Y.-F.; Fan,Y.-Z. arXiv preprint arXiv:2303.09391 2023.
[69] Harada, T.; Yoo, C.-M.; Kohri, K. Physical Review D 2013, 88, 084051.
[70] Hawking, S. W. Phys. Rev. Lett. 1971, 26, 1344–1346.
[71] Einstein, A.; Rosen, N. Phys. Rev. 1935, 48, 73–77.
[72] Misner, C. W.; Wheeler, J. A. Annals of Physics 1957, 2, 525–603.
[73] Susskind, L. Cosmic Natural Selection, 2004.
[74] Wheeler, J. A. Phys. Rev. 1955, 97, 511–536.
[75] Wheeler, J. A. Rev. Mod. Phys. 1957, 29, 463–465.
[76] Wheeler, J. A. Rev. Mod. Phys. 1961, 33, 63–78.
[77] Hawking, S. W.; Jackson, M., A brief history of time; Bantam Books New York: 2001; Vol. 666.
[78] Hawking, S. W. Communications in mathematical physics 1975, 43, 199–220.
[79] Bardeen, J. M.; Carter, B.; Hawking, S. W. Commun.Math. Phys. 1973, 31, 161–170.
[80] Hawking, S. W. Nature 1974, 248, 30–31.
[81] Antognini, A.; Bacca, S.; Fleischmann, A.; Gastaldo, L.; Hagelstein, F.; Indelicato, P.; Knecht, A.; Lensky, V.; Ohayon, B.; Pascalutsa, V.; Paul, N.; Pohl, R.; Wauters, F. Muonic-Atom Spectroscopy and Impact on Nuclear Structure and Precision QED Theory, 2022.
[82] Xiong, W.; Gasparian, A.; Gao, H.; Dutta, D.; Khandaker, M.; Liyanage, N.; Pasyuk, E.; Peng, C.; Bai, X.; Ye, L., et al. Nature 2019, 575, 147–150.
[83] Hammer, H.-W.; Meissner, U.-G. arXiv preprint arXiv:1912.03881 2019.
[84] Xiong, W.; Peng, C. Universe 2023, 9, Number: 4 Publisher: Multidisciplinary Digital Publishing Institute, 182.
[85] Karr, J.-P.; Marchand, D.; Voutier, E. Nat Rev Phys 2020, 2, 601–614.
[86] Antognini, A. et al. Science 2013, 339, 417–420.
[87] Lin, Y.-H.; Hammer, H.-W.; Meißner, U.-G. Phys. Rev. Lett. 2022, 128, Publisher: American Physical Society, 052002.
[88] Public Record Data 2012, https://publicrecords.copyright.gov/search?query=haramein& field_type=Keyword&records_per_page=10&page_number=0&date_field=representative_ date.
[89] Gross, D. J. Reviews of Modern Physics 2005, 77, 837.
[90] Wilczek, F. Nature 1999, 397, 303–306.
[91] Dirac, P. A. M. Mathematical and Physical Sciences 1974, 338, 439–446.
[92] Dirac, P. In Theories and Experiments in High-Energy Physics; Springer: 1975, pp 443–455.
[93] Wheeler, J. A. Scientific American Library 1990.
[94] Perko, H. In Journal of Physics: Conference Series, 2017; Vol. 845, p 012003.
[95] Fritzsch, H. 1983.
[96] Tanabashi, M. et al. Phys. Rev. D 2018, 98, 030001.
[97] Baker, M.; Cea, P.; Chelnokov, V.; Cosmai, L.; Cuteri, F.; Papa, A. The European Physical Journal C 2020, 80, 514.
[98] Griffiths, D. INC., USA 1987.
[99] Engelhardt, M.; Langfeld, K.; Reinhardt, H.; Tennert, O. Physical Review D 2000, 61, 054504.
[100] Kamleh, W.; Leinweber, D. B.; Virgili, A. arXiv preprint arXiv:2305.18690 2023.
[101] Özel, F.; Freire, P. Annual Review of Astronomy and Astrophysics 2016, 54, 401–440.

[102] Kaup, D. J. Physical Review 1968, 172, 1331.
[103] Kaup, D. J. Phys. Rev. 1968, 172, 1331–1342.
[104] Kehagias, A.; Sfetsos, K. Physics Letters B 2000, 472, 39–44.
[105] Long, J. C.; Chan, H. W.; Price, J. C. Nuclear Physics B 1999, 539, 23–34.
[106] Giulini, D.; Großardt, A. Class. Quantum Grav. 2012, 29, 215010.
[107] Wilczek, F. Annu. Rev. Nucl. Part. Sci. 1982, 32, 177–209.
[108] Otsuka, T.; Abe, T.; Yoshida, T.; Tsunoda, Y.; Shimizu, N.; Itagaki, N.; Utsuno, Y.; Vary, J.; Maris, P.; Ueno, H. Nat Commun 2022, 13, 2234.
[109] Ebran, J.-P.; Khan, E.; Nikšić, T.; Vretenar, D. Nature 2012, 487, 341–344.
[110] Haramein, N.; Val Baker, A. JHEPGC 2019, 05, 412–424.
[111] Sedgwick, T. M.; Collins, C. A.; Baldry, I. K.; James, P. A. Monthly Notices of the Royal Astronomical Society 2021, 500, 3728–3742.
[112] Pathria, R. K. Nature 1972, 240, Number: 5379 Publisher: Nature Publishing Group, 298–299.
[113] Popławski, N. In Regular Black Holes: Towards a New Paradigm of Gravitational Collapse; Springer: 2023, pp 485–499.
[114] Dicke, R. H. Nature 1961, 192, Number: 4801 Publisher: Nature Publishing Group, 440–441.
[115] Haramein, N. 2019, DOI: 10.31219/osf.io/2acve.
[116] Zhu, W.; Feng, L.-l. The Astrophysical Journal 2015, 811, 94.
[117] Parker, M. C.; Jeynes, C. Sci Rep 2019, 9, 10779.
[118] Castelvecchi, D. et al. Nature 2014, 506, 418–419.
[119] Kain, B. Physical Review Letters 2023, 131, 101001.
[120] Haramein, N.; Brown, W. D.; Val Baker, A. Neuroquantology 2016, 14, DOI: 10.14704/nq.2016.14. 4.961.
[121] Adler, R. J.; Casey, B.; Jacob, O. C. American Journal of Physics 1995, 63, 620–626.

Вернуться назад
Приложения