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Measurements of the Degree of Comprehensive Cooling in Stochastically Quenched Microstructures

机译:随机淬火显微组织中综合冷却度的测量

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摘要

We clarify the atomistic behavior of a micromechanical structure whose thermally driven stochastic motion has been quenched, using force-feedback techniques. The quenching is observed, via both qualitative and quantitative measurements, to optically clamp one of the vibrational modes of the lever such that the overall body temperature is only reduced slightly. The degree of comprehensive cooling is gauged by examining the reduction in the stochastic vibration of the third vibrational mode of a doubly clamped lever, while the first is quenched, to 143 K. The observation of only slight temperature reductions is confirmed by noting the absence of a phase change in condensing water vapor on a cantilever, although the deflection-magnitude of the fundamental vibrational mode is reduced to an effective temperature of 11 K. Finally, the measured stochastic variation rate is consistent with the lever''s mechanical properties, not its thermal properties, demonstrating near-room temperature operation. The results thus imply that each vibrational mode can be reduced to deep sub-Kelvin temperatures independent of the overall thermal state of the lever, thus enabling sub-Brownian sensing in applications such as chemical and radiation detection, and quantum superposition experiments
机译:我们用力反馈技术阐明了微机械结构的原子行为,该结构的热驱动随机运动已被淬灭。通过定性和定量测量可以观察到淬火,以光学方式夹紧杠杆的一种振动模式,从而使整体温度仅略微降低。通过检查双重夹紧杆的第三种振动模式的随机振动的减小(在第一种被淬火的情况下为143 K)来衡量综合冷却的程度。仅观察到不存在温度降低,可以确认只有轻微的温度降低。尽管基本振动模式的偏转幅度减小到了11 K的有效温度,但悬臂上的冷凝水蒸气发生了相变。最后,测得的随机变化率与杠杆的机械性能一致,而不是它的热性能证明了其在室温附近的运行。因此,结果表明,可以将每种振动模式降低到较深的开尔文温度,而与杠杆的整体热状态无关,从而可以在化学和辐射检测以及量子叠加实验等应用中实现亚布朗传感

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