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研究生: 鄭書麟
論文名稱: 暴脹所產生的太初磁場
指導教授: 李沃龍
學位類別: 碩士
Master
系所名稱: 物理學系
Department of Physics
論文出版年: 2009
畢業學年度: 97
語文別: 中文
論文頁數: 38
中文關鍵詞: 暴脹太初磁場
論文種類: 學術論文
相關次數: 點閱:88下載:7
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  • 本文主要在證明於在宇宙暴脹時期,暴脹場與電磁場的耦合能產生夠大的磁場,從而形成今日星系間的磁場。第1節簡述星系磁場可能的來源與產生機制,以及需要的磁場波長和強度大小。第2節引述利用暗能量與電磁場耦合,成功證明磁場來源可能性的例子。第3節利用都是純量場的特性,將其引用到暴脹場與電磁場的耦合,並介紹暴脹各階段與磁場成長之間的關係。第4節作出總結,說明暴脹可能發生在宇宙暴脹時期,不過一定要考慮快滾階段。

    第1節 前言…………………………………………………………p.3 第2節 由暗能量產生的太初磁場…………………………………p.9 第3節 在暴脹中產生太初磁場……………………………………p.15  3.1太初磁場在慢滾時期的成長…………………………………p.18  3.2快滾時期對太初磁場的影響…………………………………p.24  3.3對增加磁場的測試……………………………………………p.26  3.4實際計算………………………………………………………p.30 第4節 總結 ………………………………………………………p.35 第5節 參考資料 …………………………………………………p.37

    [1] Massimo Giovannini:Lect.NotesPhys.737:863-939 (2008)
    [2] J. M. Quashnock, A. Loeb, and D. N. Spergel, Astrophys. J. 344, L49 (1989).
    [3] B. Cheng and A.V. Olinto, Phys. Rev. D 50, 2421 (1994).
    [4] G. Sigl, A. Olinto, and K. Jedamkiz., Phys. Rev. D 55, 4582 (1997).
    [5] G. Baym, D. Bo¨deker, and L. McLerran, Phys. Rev. D 53, 662 (1996).
    [6] D. Boyanovsky, Phase Transitions in the Early Universe:Theory and Observations, edited by H. J. de Vega, M. Khalatnikov, and N. Snachez, NATO Advanced Study Institute (Kluwer, Dordrecht, 2001), p. 3.
    [7] L. M. Widrow, Rev. Mod. Phys. 74, 775 (2002).
    [8] T. Vachaspati, Phys. Lett. B 265, 258 (1991).
    [9] M. S. Turner and L. M. Widrow, Phys. Rev. D 37, 2743 (1988).
    [10] L. Parker, Phys. Rev. Lett. 21, 562 (1968).
    [11] A. Dolgov and J. Silk, Phys. Rev. D 47, 3144 (1993).
    [12] N.Y. Gnedin, A. Ferrara, and E. G. Zweibel, Astrophys. J. 539, 505 (2000).
    [13] K. Subramanian, D. Narasimha, and S. M. Chitre, Mon. Not. R. Astron. Soc. 271, 15 (1994).
    [14] R. Opher and U. F. Wichoski, Phys. Rev. Lett. 78, 787 (1997).
    [15] P. M. S. Blackett, Nature (London) 159, 658 (1947).
    [16] A. Schuster, Proc. R. Inst. 13, 273 (1890); Proc. Phys. Soc. London 24, 121 (1911).
    [17] I. Barnes and G. Efstathiou, Astrophys. J. 319, 575 (1987).
    [18] G. Efstathiou and B. J. T. Jones, Mon. Not. R. Astron. Soc. 186, 133 (1979).
    [19] P. J. E. Peebles, Astrophys. J. 155, 393 (1969).
    [20] S. D. M. White, Astrophys. J. 286, 38 (1984).
    [21] O. Miranda, M. Opher, and R. Opher, Mon. Not. R. Astron. Soc. 301, 547 (1998).
    [22] O. D. Miranda and R. Opher, Mon. Not. R. Astron. Soc. 283, 912 (1996).
    [23] O. D. Miranda and R. Opher, Astrophys. J. 482, 573 (1997).
    [24] L. C. Jafelice and R. Opher, Mon. Not. R. Astron. Soc. 257, 135 (1992).
    [25] ] K. Takahashi, K. Ichiki, H. Ohno, and H. Hanayama, Phys. Rev. Lett. 95, 121301 (2005).
    [26] R. Banerjee and K. Jedamzik, Phys. Rev. D 70, 123003 (2004).
    [27] A. Brandenburg, K. Enqvist, and P. Olesen, Phys. Rev. D 54, 1291 (1996).
    [28] W. Daniel Garretson, George B. Field and Sean M. Carroll:Phys. Rev. D 46, 5346 - 5351 (1992)
    [29] B. Ratra: Astrophys. J. Lett. 391, L1 (1992).
    [30] S. Carroll, G. Field, R. Jackiw: Phys. Rev. D 41, 1231 (1990).
    [31] W. D. Garretson, G. Field, S. Carroll: Phys. Rev. D 46, 5346 (1992).
    [32] G. Field, S. Carroll Phys. Rev. D: 62, 103008 (2000).
    [33] Lee, Da-Shin; Lee, Wolung; Ng, Kin-Wang:Phys.Lett. B542 (2002) 1-7
    [34] See, e.g., L.Wang, R.R. Caldwell, J.P. Ostriker, P.J. Steinhardt, Astrophys. J. 530 (2000) 17.
    [35] J. Frieman, C. Hill, A. Stebbins, I. Waga, Phys. Rev. Lett. 75 (1995) 2077;
    K. Coble, S. Dodelson, J. Frieman, Phys. Rev. D 55 (1997) 1851;
    J. Frieman, I. Waga, Phys. Rev. D 57 (1998) 4642.
    [36] M.S. Turner, L.M.Widrow, Phys. Rev. D 37 (1988) 2743.
    [37] M. Giovannini, M. Shaposhnikov, Phys. Rev. D 62 (2000) 103512, astro-ph/0011105.
    [38] R.M. Kulsrud, R. Cen, J.P. Ostriker, D. Ryu, Astrophys. J. 480(1997)481.
    [39] D. Boyanovsky, D.-S. Lee, A. Singh:Phys. Rev. D 48 (1993) 800;
    D.-S. Lee, K.-W. Ng, Phys. Rev. D 61 (2000) 085003
    [40] G.G. Raffelt, Stars as Laboratories for Fundamental Physics, University of Chicago Press, Chicago. (1996)
    [41] Misner, Charles W. (1968). "The isotropy of the universe". Astrophysical Journal 151: 431.
    [42] Misner, Charles; Thorne, Kip S. and Wheeler, John Archibald (1973). Gravitation. San Francisco: W. H. Freeman. pp. 489–490, 525–526.
    [43] Weinberg, Steven (1971). Gravitation and Cosmology. John Wiley. pp. 740, 815.
    [44] Lemaître, Georges (1933). "The expanding universe". Ann. Soc. Sci. Bruxelles 47A: 49. , English in Gen. Rel. Grav. 29:641-680, 1997.
    [45] R. C. Tolman (1934). Relativity, Thermodynamics, and Cosmology. Oxford: Clarendon Press. LCCN 340-32023. Reissued (1987) New York: Dover
    [46] Misner, Charles W. (1969). "Mixmaster universe". Phys. Rev. Lett. 22: 1071–74.
    [47] Dicke, Robert H. (1970). Gravitation and the Universe. Philadelphia: American Philosopical Society.
    [48] Dicke, Robert H.; P. J. E. Peebles (1979). "The big bang cosmology – enigmas and nostrums". ed. S. W. Hawking and W. Israel General Relativity: an Einstein Centenary Survey, Cambridge University Press.
    [49] 't Hooft, Gerard (1974). "Magnetic monopoles in Unified Gauge Theories". Nucl. Phys. B79: 276–84.
    [50] Polyakov, Alexander M. (1974). "Particle spectrum in quantum field theory". JETP Lett. 20: 194–5.
    [51] Guth, Alan; and Henry Tye (1980). "Phase Transitions and Magnetic Monopole Production in the Very Early Universe". Phys.Rev.Lett. 44: 631–635; Erratum ibid.,44:963, 1980.
    [52] Einhorn, Martin B; D. L. Stein, and Doug Toussaint (1980). "Are Grand Unified Theories Compatible with Standard Cosmology?". Phys. Rev. D21: 3295–3298.
    [53] See, e.g. Yao, W.–M.; et al. (Particle Data Group) (2006). "Review of Particle Physics". J. Phys. G33: 1.
    [54] Peter Hoyng, Relativistic Astrophysics and Cosmology, © 2006 Berlin: Springer
    [55] Viatcheslav Mukhanov, Physical Foundations of Cosmology, © V. Mukhanov 2005

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