论文标题
与高频散装声音谐振器的同时布里鲁因和压电耦合
Simultaneous Brillouin and piezoelectric coupling to a high-frequency bulk acoustic resonator
论文作者
论文摘要
批量的声音谐振器支持能够与各种量子系统耦合的稳健,长寿命的机械模式。在单独的作品中,通过Brillouin相互作用,通过压电和光腔与超导Qubits的同时实现了强大的耦合。在这项工作中,我们提出了一个新型的混合微波/光学平台,该平台能够通过腔体增强的压电和光弹相互作用耦合到散装声波。模块化,可调的系统可在3D微波腔,高频散装声音谐振器和Fabry Perot腔之间实现完全谐振和模式匹配的相互作用。我们意识到这种压电 - 布里林在X-Cut Quartz中的相互作用,证明了使用光空腔增强的强烈光学相互作用和高合作的潜力。我们进一步展示了该设备如何充当双向电动机械传感器,量子效率超过$ 10^{ - 8} $,以及通往Unity转换效率的可行途径。在该系统中应用大谐振微波场的高光学敏感性和能力还提供了一种新工具来探测异常机电耦合,我们通过研究(名义中心核对的CAF $ _2 $)来证明这一点,并揭示了寄生虫电离为83 AM/V。此类研究是新兴量子技术的重要主题,并突出了这种新的混合动力平台的多功能性。
Bulk acoustic resonators support robust, long-lived mechanical modes, capable of coupling to various quantum systems. In separate works, such devices have achieved strong coupling to both superconducting qubits, via piezoelectricity, and optical cavities, via Brillouin interactions. In this work, we present a novel hybrid microwave/optical platform capable of coupling to bulk acoustic waves through cavity-enhanced piezoelectric and photoelastic interactions. The modular, tunable system achieves fully resonant and well-mode-matched interactions between a 3D microwave cavity, a high-frequency bulk acoustic resonator, and a Fabry Perot cavity. We realize this piezo-Brillouin interaction in x-cut quartz, demonstrating the potential for strong optomechanical interactions and high cooperativity using optical cavity enhancement. We further show how this device functions as a bidirectional electro-opto-mechanical transducer, with quantum efficiency exceeding $10^{-8}$, and a feasible path towards unity conversion efficiency. The high optical sensitivity and ability to apply large resonant microwave field in this system also offers a new tool for probing anomalous electromechanical couplings, which we demonstrate by investigating (nominally-centrosymmetric) CaF$_2$ and revealing a parasitic piezoelectricity of 83 am/V. Such studies are an important topic for emerging quantum technologies, and highlight the versatility of this new hybrid platform.