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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Calculation of thermal radiation input via funneling through a duct shield with baffles for KAGRA
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Calculation of thermal radiation input via funneling through a duct shield with baffles for KAGRA

机译:通过带有挡板的带有挡板的风道罩漏斗计算的热辐射输入

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Many studies worldwide are currently developing interferometric methods for detecting gravitational waves and one of the challenges in such methods has been to sufficiently cool the mirror in interferometric detectors in order to reduce thermal noise. Although the mirror is surrounded by a radiation shield, a hole in the shield is necessary to allow the laser beam to pass. To reduce the thermal radiation caused by the presence of the hole, we will install a duct shield with baffles. To calculate the heat input through the duct shield, we applied a ray trace model whose results were consistent with those of an experiment without baffles. As an application of our model, the heat input in the case of KAGRA (a Japanese cryogenic gravitational wave detector project) was calculated. Our analysis suggests that baffles in the duct shield can considerably reduce the heat input in KAGRA.
机译:目前,世界范围内的许多研究正在开发用于检测重力波的干涉测量方法,并且这些方法的挑战之一是充分冷却干涉测量检测器中的反射镜以减少热噪声。尽管反射镜被辐射屏蔽罩所包围,但是在屏蔽罩中必须有一个孔以允许激光束通过。为了减少由孔的存在引起的热辐射,我们将安装带有挡板的风道护罩。为了计算通过导管罩输入的热量,我们应用了射线追踪模型,该模型的结果与不带挡板的实验的结果一致。作为我们模型的应用,计算了KAGRA(日本低温重力波探测器项目)情况下的热量输入。我们的分析表明,导管护罩中的挡板可以大大减少KAGRA中的热量输入。

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