论文标题
集成多元素光学力学的藻类异质结构中的悬挂光子晶体膜
Suspended photonic crystal membranes in AlGaAs heterostructures for integrated multi-element optomechanics
论文作者
论文摘要
我们提出了由藻类异质结构制造的高反射性机械谐振器,用于在电信波长状态下运行的自由空间光腔。机械谐振器是在GAAS的平板中制造的,并用光子晶体构成了图案,以增加平面外反射率。机械模式的表征揭示了GAAS设备层中残留的拉伸应力。这种应力导致的机械频率高于无重理的GAA,可用于机械耗散的应变工程。同时,我们发现入射光束的有限腰部导致反射光谱中的倾角。此功能从耦合到光子晶体的指导共振,这一效果在设计有限尺寸的板时必须考虑到这一效果。此处演示的单个和子 - $ \ upmu $ mu间距的双层板可以直接在同一材料平台的分布式bragg反射镜镜子的顶部制造。这样的平台为实现芯片上集成的多元素腔光学机械设备和光力学微腔提供了一条途径。
We present high-reflectivity mechanical resonators fabricated from AlGaAs heterostructures for use in free-space optical cavities operating in the telecom wavelength regime. The mechanical resonators are fabricated in slabs of GaAs and patterned with a photonic crystal to increase their out-of-plane reflectivity. Characterization of the mechanical modes reveals residual tensile stress in the GaAs device layer. This stress results in higher mechanical frequencies than in unstressed GaAs and can be used for strain engineering of mechanical dissipation. Simultaneously, we find that the finite waist of the incident optical beam leads to a dip in the reflectance spectrum. This feature originates from coupling to a guided resonance of the photonic crystal, an effect that must be taken into account when designing slabs of finite size. The single- and sub-$\upmu$m-spaced double-layer slabs demonstrated here can be directly fabricated on top of a distributed Bragg reflector mirror in the same material platform. Such a platform opens a route for realizing integrated multi-element cavity optomechanical devices and optomechanical microcavities on chip.