Controlled Four-Wave Mixing in a Nanotransducer

Controlled Four-Wave Mixing in a Nanotransducer
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DOI:
10.1007/s10946-021-09941-w
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发表时间:
2021-03
影响因子:
0.9
通讯作者:
Asma Javaid;Sohail Ahmed;F. Ghafoor;Tomotake Yamakoshi;F. Saif
Asma Javaid;Sohail Ahmed;F. Ghafoor;Tomotake Yamakoshi;F. Saif
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
Asma Javaid;Sohail Ahmed;F. Ghafoor;Tomotake Yamakoshi;F. Saif

文献摘要

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本文研究了驱动场和探测场共同作用下电光换能器的动力学行为。纳米光电机械系统(NEOMS)由一个固定的反射镜,这是耦合到一个振动的端面镜通过光机耦合腔,而库仑相互作用耦合的运动镜与其他运动镜。在探测透射场中,研究了运动反射镜在外加两个驱动场作用下的四波混频现象。通过改变外驱动场的振幅和相位,我们证明了四波混频具有受控的动力学特性。我们提出了一组实验参数,以实现在当今的实验室实验中的现象。
We study the dynamics of an electro-optical transducer in the presence of a driving field and a probe field. The nano-electro-optomechanical system (NEOMS) consists of a cavity with a fixed mirror, which is coupled to a vibrating end mirror through an optomechanical coupling, whereas the Coulomb interaction couples the moving mirror with the other moving mirror. In the probe transmission field, four-wave mixing (FWM) is reported in the presence of two external driving fields on moving mirrors. We show that the four-wave mixing exhibits controlled dynamics by varying the amplitudes and phases of the external driving fields. We present a set of experimental parameters to realize the phenomenon in present-day laboratory experiments.