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Competition between heating and cooling effects in an optomechanical oscillator using a squeezed field

Competition between heating and cooling effects in an optomechanical oscillator using a squeezed field

来源:Arxiv_logoArxiv
英文摘要

Squeezed light is a useful phenomenon that can be exploited to improve the sensitivity of specific classes of detectors based on optomechanical effects. Recently, there has been significant interest in the potential application of a squeezed field in the cooling of an optomechanical oscillator. It has been shown that this field could cool an oscillator below the standard limit of a coherent field. In this study, the effect of squeezed light was evaluated by explicitly examining the role of the squeezing parameters on the final effective temperature of the oscillator. The results show that the observed cooling and heating effects are strongly dependent on the squeezing parameters and the phase. Using an oscillator of 2$\pi\times$10.1 MHz driven by a 1064-nm laser, the lowest effective temperature and quantum number are three orders of magnitude smaller compared to the case of no squeezing; especially, these minimum values are obtained at the squeezing phase of about 0.8$\pi$. This study highlighted important insights for the optimization of cooling efficiency using squeezed light.

Vinh N. T. Pham、Chu Manh Hoang、Nguyen Duy Vy

10.1080/09500340.2021.1875073

物理学

Vinh N. T. Pham,Chu Manh Hoang,Nguyen Duy Vy.Competition between heating and cooling effects in an optomechanical oscillator using a squeezed field[EB/OL].(2025-05-27)[2025-06-12].https://arxiv.org/abs/2505.20833.点此复制

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