物理
激光线宽
压缩相干态
领域(数学)
激光冷却
量子噪声
量子力学
基态
谐振器
量子光学
量子
真空状态
共振(粒子物理)
量子电动力学
热的
光学
激光器
相干态
纯数学
气象学
数学
作者
Muhammad Asjad,Stefano Zippilli,David Vitali
出处
期刊:Physical review
[American Physical Society]
日期:2016-11-28
卷期号:94 (5)
被引量:46
标识
DOI:10.1103/physreva.94.051801
摘要
We develop a theory of optomechanical cooling with a squeezed input light field. We show that Stokes heating transitions can be fully suppressed when the driving field is squeezed below the vacuum noise level at an appropriately selected squeezing phase and for a finite amount of squeezing. The quantum backaction limit to laser cooling can be thereforemoved down to zero and the resulting final temperature is then solely determined by the ratio between the thermal phonon number and the optomechanical cooperativity parameter, independently of the actual values of the cavity linewidth and mechanical frequency. Therefore, driving with a squeezed input field allows us to prepare nanomechanical resonators, even with low resonance frequency, in their quantum ground state with a fidelity very close to one,.
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