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Spectral Evidence of Squeezing of a Weakly Damped Driven Nanomechanical Mode

机译:浅阻尼驱动纳米力学模式挤压的光谱证据

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Because of the broken time-translation symmetry, in periodically driven vibrational systems fluctuations of different vibration components have different intensities. Fluctuations of one of the components are often squeezed, whereas fluctuations of the other component, which is shifted in phase by π=2, are increased. Squeezing is a multifaceted phenomenon; it attracts much attention from the perspective of highprecision measurements. Here we demonstrate a new and hitherto unappreciated side of squeezing: its direct manifestation in the spectra of driven vibrational systems. With a weakly damped nanomechanical resonator, we study the spectrum of thermal fluctuations of a resonantly driven nonlinear mode. In the attained sideband-resolved regime, we show that the asymmetry of the spectrum directly characterizes the squeezing. This opens a way to deduce squeezing of thermal fluctuations in strongly underdamped resonators, for which a direct determination by a standard homodyne measurement is impeded by frequency fluctuations. The experimental and theoretical results are in excellent agreement. We further extend the theory to also describe the spectral manifestation of squeezing of quantum fluctuations.
机译:由于时间平移对称性破裂,在定期驱动的振动系统的不同振动部件的波动具有不同的强度。通常挤压其中一个部件的波动,而其他组分的波动率在相位偏移π= 2的情况下增加。挤压是一种多方面现象;它从高精度测量的角度吸引了很多关注。在这里,我们展示了一种新的和迄今未被覆盖的挤压:它在驱动振动系统的光谱中直接表现。利用弱阻尼的纳米机械谐振器,我们研究了谐振驱动的非线性模式的热波动的光谱。在达到的边带解析的制度中,我们表明光谱的不对称性直接表征挤压。这使得一种方法可以推断出强欠湿谐振器中的热波动的挤压,因此通过频率波动阻抗标准杂差测量的直接测定。实验和理论结果符合很好。我们进一步扩展了该理论,也可以描述量子波动挤压的光谱表现。

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