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A massless scalar field in Robertson-Walker spacetimes: Adiabatic regularization and Green’s function

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【作者】 张杨王博叶翾

【Author】 Yang Zhang;Bo Wang;Xuan Ye;Department of Astronomy, CAS Key Laboratory for Researches in Galaxies and Cosmology, School of Astronomy and Space Sciences,University of Science and Technology of China;

【机构】 Department of Astronomy, CAS Key Laboratory for Researches in Galaxies and Cosmology, School of Astronomy and Space Sciences,University of Science and Technology of China

【摘要】 We study adiabatic regularization of a coupling massless scalar field in general spatially flat RobertsonWalker(RW) spacetimes. For the conformal coupling, the 2nd-order regularized power spectrum and 4th-order regularized stress tensor are zero, and no trace anomaly exists in general RW spacetimes. This is a new result that exceeds those found in de Sitter space. For the minimal coupling, the regularized spectra are also zero in the radiationdominant and matter-dominant stages, as well as in de Sitter space. The vanishing of these adiabatically regularized spectra is further confirmed by direct regularization of the Green’s function. For a general coupling and general RW spacetimes, the regularized spectra can be negative under the conventional prescription. At a higher order of regularization, the spectra will generally become positive, but will also acquire IR divergence, which is inevitable for a massless field. To avoid the IR divergence, the inside-horizon regularization is applied. Through these procedures,nonnegative UV-and IR-convergent power spectrum and spectral energy density will eventually be achieved.

【Abstract】 We study adiabatic regularization of a coupling massless scalar field in general spatially flat RobertsonWalker(RW) spacetimes. For the conformal coupling, the 2nd-order regularized power spectrum and 4th-order regularized stress tensor are zero, and no trace anomaly exists in general RW spacetimes. This is a new result that exceeds those found in de Sitter space. For the minimal coupling, the regularized spectra are also zero in the radiationdominant and matter-dominant stages, as well as in de Sitter space. The vanishing of these adiabatically regularized spectra is further confirmed by direct regularization of the Green’s function. For a general coupling and general RW spacetimes, the regularized spectra can be negative under the conventional prescription. At a higher order of regularization, the spectra will generally become positive, but will also acquire IR divergence, which is inevitable for a massless field. To avoid the IR divergence, the inside-horizon regularization is applied. Through these procedures,nonnegative UV-and IR-convergent power spectrum and spectral energy density will eventually be achieved.

【基金】 Supported by NSFC (11421303, 11675165, 11633001, 11961131007);supported by CPSF (2019M662168)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2020年09期
  • 【分类号】P159
  • 【下载频次】6
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