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Non-linear operation of nanomechnical systems combining photothermal excitation and magneto-motive detection

机译:结合光热激发和磁动力检测的纳米机械系统的非线性操作

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We present a non-linear operation of a nanomechanical beam resonator by photothermal excitation at 4 K. The resonators dimensions are 10 mu m in length, 200 nm in width, and 200 nm in height. The actuation mechanism is based on a pulsed diode laser focused onto the centre of the beam resonator. Thermally induced stress caused by the different thermal expansion coefficients of the bi-layer system periodically deflects the resonator. Magnetomotively detected amplitudes up to 150 nm are reached at the fundamental resonance mode at a frequency of 8.9 MHz. Furthermore, the third eigenmode of the resonator at a frequency 36 MHz is also excited. We conclude that the photothermal excitation at 4 K should be applicable up to the GHz regime, the operation in the non-linear regime can be used for performance enhancement of nanomechanical systems, and the combination of photothermal excitation and magneto-motive detection avoids undesired cross talk.
机译:我们提出了在4 K下通过光热激励对纳米机械梁谐振器进行的非线性操作。谐振器尺寸为长10微米,宽200纳米,高200纳米。该致动机制基于聚焦在光束谐振器中心的脉冲二极管激光器。由双层系统的不同热膨胀系数引起的热感应应力使谐振器周期性地偏转。在基本共振模式下,以8.9 MHz的频率达到磁电检测到的最大150 nm的振幅。此外,谐振器在36 MHz频率下的第三本征模式也被激发。我们得出的结论是,在4 K的光热激发应适用于GHz范围,非线性条件下的操作可用于增强纳米机械系统的性能,并且光热激发和磁动力检测相结合可避免不必要的交叉谈论。

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