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首页> 外文期刊>Physical review letters >Reduction and Possible Elimination of Coating Thermal Noise Using a Rigidly Controlled Cavity with a Quantum-Nondemolition Technique
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Reduction and Possible Elimination of Coating Thermal Noise Using a Rigidly Controlled Cavity with a Quantum-Nondemolition Technique

机译:使用刚性非控制腔和量子不爆破技术减少和消除涂层热噪声

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摘要

Thermal noise of a mirror is one of the most important issues in high-precision measurements such as gravitational-wave detection or cold damping experiments. It has been pointed out that thermal noise of a mirror with multilayer coatings can be reduced by mechanical separation of the layers. In this Letter, we introduce a way to further reduce thermal noise by locking the mechanically separated mirrors. The reduction is limited by the standard quantum limit of control noise, but it can be overcome with a quantum-nondemolition technique, which finally raises a possibility of complete elimination of coating thermal noise.
机译:镜子的热噪声是高精度测量(例如重力波检测或冷阻尼实验)中最重要的问题之一。已经指出,具有多层涂层的反射镜的热噪声可以通过各层的机械分离来降低。在这封信中,我们介绍了一种通过锁定机械分离的镜来进一步降低热噪声的方法。降低受到控制噪声的标准量子极限的限制,但是可以通过量子非拆卸技术来克服,这最终提高了完全消除涂层热噪声的可能性。

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