Wigner Function Reconstruction in Levitated Optomechanics

Muddassar Rashid, M. Toroš, H. Ulbricht
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引用次数: 17

Abstract

Abstract We demonstrate the reconstruction of theWigner function from marginal distributions of the motion of a single trapped particle using homodyne detection. We show that it is possible to generate quantum states of levitated optomechanical systems even under the efect of continuous measurement by the trapping laser light. We describe the opto-mechanical coupling for the case of the particle trapped by a free-space focused laser beam, explicitly for the case without an optical cavity. We use the scheme to reconstruct the Wigner function of experimental data in perfect agreement with the expected Gaussian distribution of a thermal state of motion. This opens a route for quantum state preparation in levitated optomechanics.
悬浮光学力学中的Wigner函数重构
摘要:我们展示了利用同差检测从单个捕获粒子的运动边缘分布重建wigner函数。我们证明,即使在捕获激光连续测量的作用下,也有可能产生悬浮光力学系统的量子态。我们描述了被自由空间聚焦激光束捕获的粒子的光-机械耦合,明确地描述了没有光腔的情况。我们使用该方案来重建实验数据的Wigner函数,使其完全符合热运动态的高斯分布。这为在悬浮光力学中制备量子态开辟了一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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