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Geometric phase of two-level atoms and thermal nature of de Sitter spacetime
Tian Zehua,Jing Jiliang *
Department of Physics, Hunan Normal University, ChangSha 410081
*Correspondence author
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Funding: the National Natural Science Foundation of China(No.No.11175065,10935013), the SRFDP(No.No.20114306110003), Hunan Provincial Innovation Foundation For Postgraduate(No.No.CX2011B185)
Opened online: 9 September 2013
Accepted by: none
Citation: Tian Zehua,Jing Jiliang.Geometric phase of two-level atoms and thermal nature of de Sitter spacetime[OL]. [ 9 September 2013] http://en.paper.edu.cn/en_releasepaper/content/4558086
 
 
In the framework of open quantum systems, we study the geometric phase acquired by freely falling and static two-level atoms interacting with quantized conformally coupled massless scalar fields in de Sitter-invariant vacuum. We find that, for the freely falling atom, the geometric phase gets a correction resulting from a thermal bath with the Gibbons-Hawking temperature, thus it clearly reveals the intrinsic thermal nature of de Sitter spacetime from a different physical context. For the static atom, there is a correction to the geometric phase coming from both the intrinsic thermal nature of de Sitter spacetime and the Unruh effect associated with the proper acceleration of the atom. Furthermore, in a gedanken experiment, we estimate the magnitude of the correction to the geometric phase as opposed to that in a flat spacetime. We find that the correction for the freely falling atom is too tiny to be measured, and that for the static atom achieves an observable magnitude only when the atom almost locates at the horizon.
Keywords:geometric phase; open quantum system; and de Sitter spacetime
 
 
 

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