论文标题
通过空腔增强光子兰巴达方案的相干声子产生
Generation of Coherent Phonons via a Cavity Enhanced Photonic Lambda Scheme
论文作者
论文摘要
我们通过晶体的光弹性能通过光子兰伯达方案增强的微波腔,通过晶体的光弹性能在石英大量声波(BAW)谐振器中生成相干声子。这是通过在微波后腔腔谐振器的柱壁和相邻壁之间嵌入单个晶体BAW谐振器来实现的。这款3D光子总体LC谐振器同时充当了BAW声子谐振器的电极,并允许通过石英的线性压电响应直接读取相干声子。微波泵,$ω_p$被调整为腔共振$ω_0$,而探测频率$ω__{probe} $在红色和蓝色的蓝色频率相对于baw phonon频率$ω_m$而围绕红色和蓝色蓝色的值却有变化。生成的声子的泵和探针功率依赖性明确地决定了要进行电纵横动的过程,而在泵和探针之间的差异频率下产生了声子,而无需进行背部动作效应。因此,声子是没有阈值的,可以被认为类似于被困的连贯种群(CPT)MASER方案。
We demonstrate the generation of coherent phonons in a quartz Bulk Acoustic Wave (BAW) resonator through the photoelastic properties of the crystal, via the coupling to a microwave cavity enhanced by a photonic lambda scheme. This is achieved by imbedding a single crystal BAW resonator between the post and the adjacent wall of a microwave reentrant cavity resonator. This 3D photonic lumped LC resonator at the same time acts as the electrodes of a BAW phonon resonator, and allows the direct readout of coherent phonons via the linear piezoelectric response of the quartz. A microwave pump, $ω_p$ is tuned to the cavity resonance $ω_0$, while a probe frequency, $ω_{probe}$, is detuned and varied around the red and blue detuned values with respect to the BAW phonon frequency, $Ω_m$. The pump and probe power dependence of the generated phonons unequivocally determines the process to be electrostrictive, with the phonons produced at the difference frequency between pump and probe, with no back action effects involved. Thus, the phonons are created without threshold and can be considered analogous to a Coherent Population Trapped (CPT) maser scheme.