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Absolute measurement of thermal noise in a resonant short-range force experiment

机译:在共振短程力实验中绝对测量热噪声

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摘要

Planar, double-torsional oscillators are especially suitable for short-range macroscopic force search experiments, since they can be operated at the limit of instrumental thermal noise. As a study of this limit, we report a measurement of the noise kinetic energy of a polycrystalline tungsten oscillator in thermal equilibrium at room temperature. The fluctuations of the oscillator in a high-Q torsional mode with a resonance frequency near 1 kHz are detected with capacitive transducers coupled to a sensitive differential amplifier. The electronic processing is calibrated by means of a known electrostatic force and input from a finite-element model. The measured average kinetic energy, E_(exp) = (2.0 ± 0.3) × 10~(-21) J, is in agreement with the expected value of 1 2k_BT.
机译:平面双扭转振荡器特别适合短距离宏观力搜索实验,因为它们可以在仪器热噪声的极限下运行。作为对此极限的研究,我们报告了在室温下热平衡下多晶钨振荡器的噪声动能的测量结果。使用耦合到灵敏差分放大器的电容式换能器检测谐振频率接近1 kHz的高Q扭转模式下的振荡器波动。借助于已知的静电力和来自有限元模型的输入来校准电子处理。测得的平均动能E_(exp)=(2.0±0.3)×10〜(-21)J,与期望值1 2k_BT一致。

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