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Short-range inverse-square law experiment in space

机译:空间短距离反平方定律实验

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The objective of ISLES (inverse-square law experiment in space) is to perform a null test of Newton's law on the ISS with a resolution of one part in 10~5 at ranges from 100 μm to 1 mm. ISLES will be sensitive enough to detect axions with the strongest allowed coupling and to test the string-theory prediction with R ≥ 5 μm. To accomplish these goals on the rather noisy International Space Station, the experiment is set up to provide immunity from the vibrations and other common-mode accelerations. The measures to be applied for reducing the effects of disturbances will be described in this presentation. As designed, the experiment will be cooled to less than 2 K in NASA's low temperature facility the LTMPF, allowing superconducting magnetic levitation in microgravity to obtain very soft, low-loss suspension of the test masses. The low-damping magnetic levitation, combined with a low-noise SQUID, leads to extremely low intrinsic noise in the detector. To minimize Newtonian errors, ISLES employs a near-null source of gravity, a circular disk of large diameter-to-thickness ratio. Two test masses, also disk-shaped, are suspended on the two sides of the source mass at a distance of 100 μm to 1 mm. The signal is detected by a superconducting differential accelerometer, making a highly sensitive sensor of the gravity force generated bv the source mass.
机译:ISLES(空间反平方定律实验)的目的是对国际空间站进行牛顿定律的零检验,其分辨率在100μm至1 mm的范围内为10〜5之一。 ISLES足够灵敏,可以检测到允许最强耦合的轴,并测试R≥5μm的弦理论预测。为了在嘈杂的国际空间站上实现这些目标,我们进行了实验,以抵抗振动和其他共模加速度。本演示文稿中将介绍用于减少干扰影响的措施。按照设计,在NASA的低温设施LTMPF中将实验冷却到不到2 K,从而允许微重力超导磁悬浮获得非常柔软,低损耗的测试物质悬浮液。低阻尼磁悬浮与低噪声SQUID相结合,导致检测器中的固有噪声极低。为了最大程度地减少牛顿误差,ISLES使用了几乎为零的重力源,即直径与厚度比大的圆盘。两个也是圆盘状的测试质量块以100μm到1 mm的距离悬挂在源质量块的两侧。该信号由超导差分加速度计检测,使传感器对源质量产生的重力非常敏感。

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