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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 >Suspending test masses in terrestrial millihertz gravitational-wave detectors: a case study with a magnetic assisted torsion pendulum
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Suspending test masses in terrestrial millihertz gravitational-wave detectors: a case study with a magnetic assisted torsion pendulum

机译:悬浮在地面Millihertz引力波探测器中的测试质量:磁辅助扭转摆的案例研究

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摘要

Current terrestrial gravitational-wave detectors operate at frequencies above 10 Hz. There is strong astrophysical motivation to construct low-frequency gravitational-wave detectors capable of observing 10 mHz-10 Hz signals. While space-based detectors provide one means of achieving this end, one may also consider terretrial detectors. However, there are numerous technological challenges. In particular, it is difficult to isolate test masses so that they are both seismically isolated and freely falling under the influence of gravity at millihertz frequencies. We investigate the challenges of low-frequency suspension in a hypothetical terrestrial detector. As a case study, we consider a magnetically assisted gravitational-wave pendulum intorsion (MAGPI) suspension design. We construct a noise budget to estimate some of the required specifications. In doing so, we identify what are likely to be a number of generic limiting noise sources for terrestrial millihertz gravitational-wave suspension systems (as well as some peculiar to the MAGPI design). We highlight significant experimental challenges in order to argue that the development of millihertz suspensions will be a daunting task. Any system that relies on magnets faces even greater challenges. Entirely mechanical designs such as Zollner pendulums may provide the best path forward.
机译:目前的地面重力波检测器在10 Hz以上的频率下运行。存在强烈的天体物理动机来构建能够观察10MHz-10 Hz信号的低频重力波检测器。虽然基于空间的探测器提供一种实现这一端的手段,但也可以考虑地形探测器。但是,有许多技术挑战。特别地,难以隔离测试质量,使得它们既是地震隔离和自由地落在千赫氏频率下重力的影响下。我们调查假设陆地探测器中低频悬架的挑战。作为一个案例研究,我们考虑一种磁辅助的引力波摆动(Magpi)悬架设计。我们构建噪音预算以估计一些所需规格。在这样做时,我们确定可能是陆地Millihertz引力波悬架系统的许多通用限制噪声源(以及Magpi设计的一些特有的)。我们突出了重大的实验挑战,以争辩说千年赫兹悬浮液的发展将是一个艰巨的任务。任何依赖磁铁的系统都面临更大的挑战。完全是Zollner Pendulums的机械设计可以提供最佳路径。

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