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Relativistic motion on Gaussian quantum steering for two-mode localized Gaussian states

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【作者】 龚小龙曹硕方越刘统华

【Author】 Xiao-Long Gong;Shuo Cao;Yue Fang;Tong-Hua Liu;School of Physics and Optoelectronic, Yangtze University;Department of Astronomy, Beijing Normal University;Advanced Institute of Natural Sciences, Beijing Normal University at Zhuhai;

【通讯作者】 曹硕;方越;刘统华;

【机构】 School of Physics and Optoelectronic, Yangtze UniversityDepartment of Astronomy, Beijing Normal UniversityAdvanced Institute of Natural Sciences, Beijing Normal University at Zhuhai

【摘要】 Realistic quantum systems always exhibit gravitational and relativistic features. In this paper, we investigate the properties of Gaussian steering and its asymmetry by the localized two-mode Gaussian quantum states, instead of the traditional single-mode approximation method in the relativistic setting. We find that the one-side Gaussian quantum steering will monotonically decrease with increasing observers of acceleration. Meanwhile, our results also reveal the interesting behavior of the Gaussian steering asymmetry, which increases for a specific range of accelerated parameter and then gradually approaches to a finite value. Such finding is well consistent and explained by the well-known Unruh effect,which could significantly destroy the one-side Gaussian quantum steering. Finally, our results could also be applied to the dynamical studies of Gaussian steering between the Earth and satellites, since the effects of acceleration are equal to the effects of gravity according to the equivalence principle.

【Abstract】 Realistic quantum systems always exhibit gravitational and relativistic features. In this paper, we investigate the properties of Gaussian steering and its asymmetry by the localized two-mode Gaussian quantum states, instead of the traditional single-mode approximation method in the relativistic setting. We find that the one-side Gaussian quantum steering will monotonically decrease with increasing observers of acceleration. Meanwhile, our results also reveal the interesting behavior of the Gaussian steering asymmetry, which increases for a specific range of accelerated parameter and then gradually approaches to a finite value. Such finding is well consistent and explained by the well-known Unruh effect,which could significantly destroy the one-side Gaussian quantum steering. Finally, our results could also be applied to the dynamical studies of Gaussian steering between the Earth and satellites, since the effects of acceleration are equal to the effects of gravity according to the equivalence principle.

【基金】 Project supported by National Key R&D Program of China (Grant No. 2017YFA0402600);the National Natural Science Foundation of China (Grant Nos. 11690023,11373014, and 11633001);Beijing Talents Fund of Organization Department of Beijing Municipal Committee of the CPC;the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No. XDB23000000);the Interdiscipline Research Funds of Beijing Normal University
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年05期
  • 【分类号】O413
  • 【下载频次】8
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