论文标题
在绝缘子语音波导上悬浮的GAA中2 GHz声波的慢速传播
Slow propagation of 2 GHz acoustical waves in a suspended GaAs on insulator phononic waveguide
论文作者
论文摘要
光电子振荡器在过去几年中占据了微波振荡器的场景,这要归功于它们在频率稳定性和相位噪声方面的出色表现。但是,这种设备的小型化是最新的挑战。最近,由于GHz中的极端紧凑性和工作频率,基于声子相互作用的设备引起了很大的兴趣。在此框架中,要获得长期频率稳定性性能的仍然缺失的元素是反馈回路内的芯片延迟。在这里,我们在实验中显示了在硅胶膜上的铜膜上的2 GHz声波的过滤和缓慢的传播,该膜在硅晶片上的异质层集成。通过工程化声波指导的分散,我们证明了能够传播的模式以下的群速度低于1000 m/s。因此,综合延迟实现将有可能改善光学声学设备,例如光机电振荡器或无线应用。
Optoelectronic oscillators have dominated the scene of microwave oscillators in the last few years thanks to their great performances regarding frequency stability and phase noise. However, miniaturization of such a device is an up to date challenge. Recently, devices based on phonon-photon interaction gather a lot of interest thanks to their extreme compactness and working frequency directly in the GHz. In this frame, a still missing element to obtain long-term frequency stability performances is an on-chip delay within the feedback loop. Here, we experimentally show filtering and slow propagation of 2 GHz acoustic waves on a Gallium Arsenide membrane heterogeneously integrated on silicon wafer. By engineering the dispersion of an acoustical waveguide, we evidence a group velocity below 1000 m/s for the mode able to propagate. Thus, an integrated delay implementation is at reach for potential improvement of opto-acoustic devices such as optomechanical oscillators or wireless applications.