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采用量子极限光机械传感器对微机械谐振器进行高灵敏度光学监测。

High-sensitivity optical monitoring of a micromechanical resonator with a quantum-limited optomechanical sensor.

作者信息

Arcizet O, Cohadon P-F, Briant T, Pinard M, Heidmann A, Mackowski J-M, Michel C, Pinard L, Français O, Rousseau L

机构信息

Laboratoire Kastler Brossel, Université Pierre et Marie Curie, Case 74, 4 place Jussieu, F75252 Paris Cedex 05, France.

出版信息

Phys Rev Lett. 2006 Sep 29;97(13):133601. doi: 10.1103/PhysRevLett.97.133601. Epub 2006 Sep 26.

Abstract

We experimentally demonstrate the high-sensitivity optical monitoring of a micromechanical resonator and its cooling by active control. Coating a low-loss mirror upon the resonator, we have built an optomechanical sensor based on a very high-finesse cavity (30 000). We have measured the thermal noise of the resonator with a quantum-limited sensitivity at the 10(-19) m/sqrt[Hz] level, and cooled the resonator down to 5 K by a cold-damping technique. Applications of our setup range from quantum optics experiments to the experimental demonstration of the quantum ground state of a macroscopic mechanical resonator.

摘要

我们通过实验证明了对微机械谐振器的高灵敏度光学监测及其通过主动控制实现的冷却。在谐振器上涂覆低损耗镜面后,我们构建了基于极高精细度腔(30000)的光机械传感器。我们已以10^(-19) m/√Hz水平的量子极限灵敏度测量了谐振器的热噪声,并通过冷阻尼技术将谐振器冷却至5 K。我们装置的应用范围从量子光学实验到宏观机械谐振器量子基态的实验演示。

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