论文标题
产生超低功率声音梳子
Generation of Ultra-Low Power Phononic Combs
论文作者
论文摘要
我们使用单调低功率信号源以$ 20 $ MK的温度来证明在散装声波系统中的语音频率梳子的激发。观察到的超低功率阈值是由于非常高质量的$ 4.2 \ times 10^8 $和相对强大的非线性效应的组合。观察到的梳子的重复速率从0.7到2Hz不等,跨越数十只赫兹。演示的系统通过压电完全激发,并且不需要模式光谱工程以及外部光学或微波信号。结果表明,梳子曲线显着取决于激发和检测电极的几何形状。观察到的强大的行李非线性低于生成阈值表明该系统是在单片光学微孔子中激发的Kerr频率梳子的语音类似物。超低功率制度开辟了一种将这种语音系统与量子混合系统(例如杂质缺陷和超导量子)等量子系统整合在一起的方式。
We demonstrate excitation of phononic frequency combs in a Bulk Acoustic Wave system at a temperature of $20$mK using a single tone low power signal source. The observed ultra low power threshold is due to a combination of very high quality factor of $4.2\times 10^8$ and relatively strong nonlinear effects. The observed repetition rate of the comb varies from 0.7 to 2Hz and spans over tens of Hertz. The demonstrated system is fully excited via piezoelectricity and does not require mode spectra engineering and external optical or microwave signals. It is shown that the comb profile significantly depends on geometry of excitation and detection electrodes. Observed strong Duffing nonlinearity below the generation threshold suggests that the system is a phononic analogue to Kerr frequency combs excited in monolithic optical microresonators. The ultra-low power regime opens a way of integrating this phononic system with quantum hybrid systems such as impurity defects and superconducting qubits.