Perturbative algorithm for rotational decoherence

M. Carlesso, H. Naeij, A. Bassi
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引用次数: 2

Abstract

Recent advances in levitated optomechanics provide new perspectives for the use of rotational degrees of freedom for the development of quantum technologies as well as for testing fundamental physics. As for the translational case, their use, especially in the quantum regime, is limited by environmental noises, whose characterization is fundamental in order to assess, control and minimize their effect, in particular decoherence. Here, we present a general perturbative approach to compute decoherence for a quantum system in a superposition of its rotational degrees of freedom. The specific cases of the dipole-dipole and quadrupole-quadrupole interactions are solved explicitly, and we show that the rotational degrees of freedom decohere on a time scale that is longer than the translational one.
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旋转退相干的微扰算法
悬浮光力学的最新进展为利用旋转自由度发展量子技术以及测试基础物理提供了新的视角。至于平移情况,它们的使用,特别是在量子状态下,受到环境噪声的限制,其特征是评估,控制和最小化其影响的基础,特别是退相干。在这里,我们提出了一种一般的微扰方法来计算量子系统在其旋转自由度叠加中的退相干。明确地求解了偶极-偶极和四极-四极相互作用的具体情况,并证明了旋转自由度在一个比平移自由度更长的时间尺度上的退相干。
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