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A new apparatus for mechanical Q-factor measurements between 5 and 300 K

机译:一种用于测量5至300 K之间的机械Q因子的新设备

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Today's laser interferometric gravitational wave detectors are sensitivity limited by thermal noise of the optical components within the detection band of about 0.1-1 kHz. Cooling down these parts to cryogenic temperatures is a promising technique to increase the sensitivity of the gravitational wave detectors by at least one to two orders of magnitudes. Cooling substantially increases the material Q-factor contributing to reduced thermal noise. This article describes a new cryogenic apparatus which allows the measurement of the mechanical Q-factor - as a measure of internal losses - in a temperature range from 5 K up to 300 K. The requirements for cryogenic Q-factor measurements and their realization are shown. The measuring technique as well as the key parameters are discussed. Exemplary, measurements on crystalline quartz and silicon (100) are given to characterize the setup.
机译:当今的激光干涉重力波探测器的灵敏度受到大约0.1-1 kHz探测带内光学组件的热噪声的限制。将这些零件冷却至低温是一种很有希望的技术,可以将重力波探测器的灵敏度提高至少一到两个数量级。冷却大大增加了材料Q因子,有助于降低热噪声。本文介绍了一种新型的低温设备,该设备允许在5 K至300 K的温度范围内测量机械Q因子(作为内部损耗的度量)。显示了对低温Q因子测量的要求及其实现。讨论了测量技术以及关键参数。示例性地,给出了对晶体石英和硅(100)的测量以表征设置。

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