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Balancing a retroreflector to minimize rotation errors using a pendulum and quadrature interferometer

机译:使用摆锤和正交干涉仪平衡后向反射器,以最大程度地减少旋转误差

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A corner-cube retroreflector has the property that the optical path length for a reflected laser beam is insensitive to rotations about a mathematical point called its optical center (OC). This property is exploited in ballistic absolute gravity meters in which a proof mass containing a corner-cube retroreflector is dropped in a vacuum, and its position is accurately determined with a laser interferometer. In order to avoid vertical position errors when the proof mass rotates during free fall, it is important to collocate its center of mass (COM) with the OC of the retroreflector. This is commonly done using a mechanical scale-based balancing procedure, which has limited accuracy due to the difficulty in finding the exact position of the COM and the OC. This paper describes a novel way to achieve the collocation by incorporating the proof mass into a pendulum and using a quadrature interferometer to interrogate its apparent translation in its twist mode. The mismatch between the COM and OC generates a signal in a quiet part of the spectrum where no mechanical resonance exists. This allows us to tune the position of the COM relative to the OC to an accuracy of about 1 mu m in all three axes. This provides a way to directly demonstrate that a rotation of the proof mass by several degrees causes an apparent translation in the direction of the laser beam of less than 1 nm. This technique allows an order of magnitude improvement over traditional methods of balancing. (C) 2015 Optical Society of America
机译:角锥后向反射器具有以下特性:反射激光束的光程长度对绕称为其光学中心(OC)的数学点的旋转不敏感。这种特性在弹道绝对重力仪中得到了利用,在该仪中,将包含角锥后向反射器的检测质量滴在真空中,并使用激光干涉仪精确确定了其位置。为了避免质量块在自由落体中旋转时的垂直位置误差,将其质量中心(COM)与后向反射镜的OC对准很重要。通常使用基于机械标尺的平衡程序来完成此操作,由于难以找到COM和OC的确切位置,因此精度有限。本文介绍了一种通过将检验质量合并到摆锤中并使用正交干涉仪在其扭曲模式下询问其表观平移来实现搭配的新颖方法。 COM和OC之间的不匹配会在频谱的安静部分产生信号,在该部分中不存在机械共振。这使我们可以将COM相对于OC的位置在所有三个轴上的精度调整为大约1微米。这提供了一种方法来直接证明检测质量旋转几度会导致在小于1 nm的激光束方向上出现明显的平移。与传统的平衡方法相比,该技术可以提高一个数量级。 (C)2015年美国眼镜学会

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