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出典: フリー百科事典『ウィキペディア(Wikipedia)』

 : Unruh effect: FullingDaviesUnruh effect

197319751976[1][2][3]

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1976 Unruh temperature[4]


akB ħ c 2.5×1020 m s2  1 K 

 TH= ħg/2πckB [5]

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[6]














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a便


 ρ = 1/a σ  τ  σ = aτ c = 1 


ρ 

ρ 沿 σ 

σ σ 2π 

2π H 1/2π H σ  ρ   σ  f ρ  ρ 


ρ  1/a 





 g= 9.81 m s2  4×1020 K  400000 K  1026 m s2 [7][8]

 3.978×1020 K  h/3mekT = 540.85 m 12.62 m 

1


 2.41×1023 K  21994 m  513 m  2.2 m 


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[9][10][11]

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[12][13]

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[14][15]

2011[16]

関連項目[編集]

出典[編集]

  1. ^ Fulling, S. A. (1973). “Nonuniqueness of Canonical Field Quantization in Riemannian Space-Time”. Physical Review D 7 (10): 2850. Bibcode1973PhRvD...7.2850F. doi:10.1103/PhysRevD.7.2850. 
  2. ^ Davies, P. C. W. (1975). “Scalar production in Schwarzschild and Rindler metrics”. Journal of Physics A 8 (4): 609. Bibcode1975JPhA....8..609D. doi:10.1088/0305-4470/8/4/022. 
  3. ^ Unruh, W. G. (1976). “Notes on black-hole evaporation”. Physical Review D 14 (4): 870. Bibcode1976PhRvD..14..870U. doi:10.1103/PhysRevD.14.870. 
  4. ^ Unruh, W. G. (2001). “Black Holes, Dumb Holes, and Entropy”. In Callender, C.. Physics meets Philosophy at the Planck Scale. Cambridge University Press. pp. 152–173 (see Eq. 7.6). ISBN 9780521664455 
  5. ^ Alsing, P. M. (2004). “Simplified derivation of the Hawking–Unruh temperature for an accelerated observer in vacuum”. American Journal of Physics 72 (12): 1524. arXiv:quant-ph/0401170v2. Bibcode2004AmJPh..72.1524A. doi:10.1119/1.1761064. 
  6. ^ Bertlmann, Reinhold A.; Zeilinger, Anton (2002). Quantum (Un)Speakables: From Bell to Quantum Information. Springer. p. 401. ISBN 3-540-42756-2. https://books.google.com/books?id=wiC0SEdQ454C&pg=PA483&dq=Unruh+%22Sokolov-Ternov+effect%22#PPA401,M1 
  7. ^ Visser, M. (2001). “Experimental Unruh radiation?”. Newsletter of the APS Topical Group on Gravitation 17: 2044. arXiv:gr-qc/0102044. Bibcode2001gr.qc.....2044P. 
  8. ^ Rosu, H. C. (2001). “Hawking-like effects and Unruh-like effects: Toward experiments?”. Gravitation and Cosmology 7: 1. arXiv:gr-qc/9406012. Bibcode1994gr.qc.....6012R. 
  9. ^ Mueller, R. (1997). “Decay of accelerated particles”. Physical Review D 56 (2): 953–960. arXiv:hep-th/9706016. Bibcode1997PhRvD..56..953M. doi:10.1103/PhysRevD.56.953. 
  10. ^ Vanzella, D. A. T. (2001). “Decay of accelerated protons and the existence of the Fulling-Davies-Unruh effect”. Physical Review Letters 87 (15): 151301. arXiv:gr-qc/0104030. Bibcode2001PhRvL..87o1301V. doi:10.1103/PhysRevLett.87.151301. 
  11. ^ Suzuki, H. (2003). “Analytic Evaluation of the Decay Rate for Accelerated Proton”. Physical Review D 67 (6): 065002. arXiv:gr-qc/0211056. Bibcode2003PhRvD..67f5002S. doi:10.1103/PhysRevD.67.065002. 
  12. ^ Smolyaninov, I. I. (2005). “Photoluminescence from a gold nanotip as an example of tabletop Unruh-Hawking radiation”. Physics Letters A 372 (47): 7043–7045. arXiv:cond-mat/0510743. Bibcode2008PhLA..372.7043S. doi:10.1016/j.physleta.2008.10.061. 
  13. ^ Ford, G. W. (2005). “Is there Unruh radiation?”. Physics Letters A 350: 17–26. arXiv:quant-ph/0509151. Bibcode2006PhLA..350...17F. doi:10.1016/j.physleta.2005.09.068. 
  14. ^ Bell, J. S. (7 February 1983). “Electrons as accelerated thermometers”. Nuclear Physics B 212 (1): 131–150. Bibcode1983NuPhB.212..131B. doi:10.1016/0550-3213(83)90601-6. 
  15. ^ Akhmedov, E. T. (2007). “On the physical meaning of the Unruh effect”. JETP Letters 86 (9): 615–619. arXiv:0705.2525. Bibcode2007JETPL..86..615A. doi:10.1134/S0021364007210138. 
  16. ^ Martín Martínez, E. (2011). “Using Berry’s Phase to Detect the Unruh Effect at Lower Accelerations”. Physical Review Letters 107 (13): 131301. arXiv:1012.2208. Bibcode2011PhRvL.107m1301M. doi:10.1103/PhysRevLett.107.131301. 

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