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Unwanted, coherent signals in the LISA bandwidth due to test mass charging

机译:由于测试大量充电,LISA带宽中不需要的,相干的信号

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摘要

Electrical charges will build up on the LISA test masses due to particle radiation from cosmic rays and from the Sun. This charging can lead to spurious forces both through Lorentz and Coulomb interactions. These effects can give rise not only to acceleration noise, but also to unwanted coherent signals in the LISA bandwidth, due to the time dependence of the amount of charge accumulated on a test mass. The amplitude of these unwanted coherent signals depends on several factors, including the charging rate, the maximum allowed charge, the discharge procedure and a number of design parameters of the sensor itself. This paper estimates the magnitude of such unwanted charging signals based on the current, nominal UP sensor dimensions and discusses approaches that may be taken to substantially reduce them for LISA. [References: 15]
机译:由于来自宇宙射线和太阳的粒子辐射,电荷将在LISA测试质量上累积。这种电荷可以通过洛伦兹和库仑相互作用而导致杂散力。这些影响不仅会导致加速度噪声,还会导致LISA带宽中不需要的相干信号,这是由于测试质量上累积的电荷量与时间有关。这些不需要的相干信号的幅度取决于几个因素,包括充电速率,最大允许电荷,放电过程和传感器本身的许多设计参数。本文根据电流,标称UP传感器尺寸估算了此类不想要的充电信号的幅度,并讨论了为LISA可以大幅度降低此类信号的方法。 [参考:15]

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