论文标题
观察声子在连续体中的拓扑充电
Observation of phonon trapping in the continuum with topological charges
论文作者
论文摘要
声子陷阱在许多科学技术领域都具有巨大的影响,从干涉引力检测器的天线到芯片尺度量子微型机械振荡器。它通常依赖于机械悬浮液 - 一种方法,同时隔离了选定的振动模式,这导致了对被困的声子进行询问的严重缺点,包括通过测量值有限的热容量和过量的噪声。为了避免这些约束,我们使用连续体(BICS)中具有拓扑特征的机械结合状态实现了一个新的声子捕获范式,并在房间和低温温度下对机械损失进行了深入的表征。我们对机械BIC的发现结合了微波频率和宏观尺寸,它揭示了一个独特的平台,用于实现经典和量子状态的机械振荡器。机械BICS的范式可能会导致用于应用程序(例如稀有事实搜索)和在未接触的参数空间中量子力学基础等应用的前所未有的感应方式。
Phonon trapping has an immense impact in many areas of science and technology, from the antennas of interferometric gravitational wave detectors to chip-scale quantum micro- and nano-mechanical oscillators. It usually relies on the mechanical suspension--an approach, while isolating selected vibrational modes, leads to serious drawbacks for interrogation of the trapped phonons, including limited heat capacity and excess noises via measurements. To circumvent these constraints, we realize a new paradigm of phonon trapping using mechanical bound states in the continuum (BICs) with topological features and conducted an in-depth characterization of the mechanical losses both at room and cryogenic temperatures. Our findings of mechanical BICs combining the microwave frequency and macroscopic size unveil a unique platform for realizing mechanical oscillators in both classical and quantum regimes. The paradigm of mechanical BICs might lead to unprecedented sensing modalities for applications such as rare-event searches and the exploration of the foundations of quantum mechanics in unreached parameter spaces.