首页> 外文会议>Conference on MOEMS and Miniaturized Systems; 20080122-23; San Jose,CA(US) >Radiation-pressure effects upon a micromirror in a high-finesse optical cavity
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Radiation-pressure effects upon a micromirror in a high-finesse optical cavity

机译:辐射压力对高级光学腔中微镜的影响

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Recent progress in high-finesse optical cavities and micro-mechanical resonators allows one to reach a new regime in which both mechanical and optical dynamics are governed by the radiation pressure exerted by light on mirrors. This optomechanical coupling leads to the existence of fundamental quantum limits in ultrasensitive interferometric measurements, and also to very efficient cooling mechanisms of micromirrors. We experimentally study these effects by monitoring in a very high-finesse cavity the displacements of a mirror coated on a micro-resonator. Directs effects of intracavity radiation pressure are experimentally demonstrated: we have observed a self-cooling of the resonator induced by the intracavity radiation pressure, to effective temperature in the 10 K range. Further experimental progress and cryogenic operation may allow for quantum optics experiments and lead to the experimental observation of the quantum ground state of a mechanical resonator.
机译:高端光学腔和微机械谐振器的最新进展使人们可以达到一种新的状态,在该状态下,机械和光学动力学都由光施加在反射镜上的辐射压力控制。这种光机械耦合导致在超灵敏干涉测量中存在基本的量子极限,并且还导致了微镜的非常有效的冷却机制。我们通过在非常精细的腔中监视微谐振器上镀膜镜的位移来实验研究这些影响。腔内辐射压力的直接影响已通过实验证明:我们观察到腔内辐射压力引起的谐振器自冷却至10 K范围内的有效温度。进一步的实验进展和低温操作可能允许进行量子光学实验,并导致对机械谐振器的量子基态进行实验观察。

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