论文标题
重力波检测器涂层的内部摩擦测量中的系统误差
A Systematic Error in the Internal Friction Measurement of Coatings for Gravitational Waves Detectors
论文作者
论文摘要
低摩擦涂层是高级技术的关键组成部分,例如光原子钟和高技能光腔,通常位于物理学最先进的实验的最前沿。值得注意的是,增加重力波检测器的灵敏度在很大程度上取决于开发新涂层,这需要开发更合适的方法和模型来研究其损耗角度。实际上,此类检测器中检测带最敏感的区域受涂层热噪声的限制,这与涂层的损耗有关。到目前为止,仅采用了仅描述理想物理特性的模型,想知道使用一个或多个损耗角度来描述涂层的机械性能。在这里,我们显示了在测量涂层损耗角度边缘处的系统误差的存在。我们提出了一个用于磁盘形谐振器的模型,该模型主要用于损失角度测量值,并将理论与测量值进行了比较,以显示该系统误差如何影响损失模型参数的准确性。
Low internal friction coatings are key components of advanced technologies such as optical atomic clocks and high-finesse optical cavity and often lie at the forefront of the most advanced experiments in Physics. Notably, increasing the sensitivity of gravitational-wave detectors depends in a very large part on developing new coatings, which entails developing more suitable methods and models to investigate their loss angle. In fact, the most sensitive region of the detection band in such detectors is limited by the coating thermal noise, which is related to the loss angle of the coating. Until now, models which describe only ideal physical properties have been adopted, wondering about the use of one or more loss angles to describe the mechanical properties of coatings. Here we show the presence of a systematic error ascribed to inhomogeneity of the sample at its edges in measuring the coating loss angle. We present a model for disk-shaped resonators, largely used in loss angle measurements, and we compare the theory with measurements showing how this systematic error impacts on the accuracy with which the loss model parameters are known.