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Operating nanobeams in a quantum fluid

机译:在量子流体中操作纳米束

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摘要

Microelectromechanical (MEMS) and nanoelectromechanical systems (NEMS) are ideal candidates for exploring quantum fluids, since they can be manufactured reproducibly, cover the frequency range from hundreds of kilohertz up to gigahertz and usually have very low power dissipation. Their small size offers the possibility of probing the condensate on scales comparable to, and below, the coherence length. That said, there have been hitherto no successful measurements of NEMS resonators in the liquid phases of helium. Here we report the operation of doubly-clamped aluminium nanobeams in superfluid 4He at temperatures spanning the superfluid transition. The devices are shown to be very sensitive detectors of the superfluid density and the normal fluid damping. However, a further and very important outcome of this work is the knowledge that now we have demonstrated that these devices can be successfully operated in superfluid 4He, it is straightforward to apply them in superfluid 3He which can be routinely cooled to below 100 μK. This brings us into the regime where nanomechanical devices operating at a few MHz frequencies may enter their mechanical quantum ground state.
机译:微机电(MEMS)和纳米机电系统(NEMS)是探索量子流体的理想选择,因为它们可重复生产,覆盖从数百千赫兹到千兆赫兹的频率范围,并且通常功耗非常低。它们的小尺寸提供了以与相干长度相当或更低的比例探测凝结水的可能性。也就是说,迄今为止,在氦液相中没有成功测量NEMS谐振器的方法。在这里,我们报告了在跨过超流体过渡温度的超流体4He中双钳位的铝纳米束的操作。该设备显示为超流体密度和正常流体阻尼的非常灵敏的检测器。但是,这项工作的另一个非常重要的成果是,现在我们已经证明这些设备可以在4He超流体中成功运行,因此很容易将它们应用于通常可以冷却至100μK以下的3He超流体。这使我们进入一种机制,在这种机制下,工作于几个MHz频率的纳米机械设备可能会进入其机械量子基态。

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