论文标题
中红外单晶干扰涂层,过量的光损失低于10 ppm
Mid-infrared monocrystalline interference coatings with excess optical loss below 10 ppm
论文作者
论文摘要
我们在中心波长为4.54 um的中心波长中,呈现高反射性底物转移的单晶GAAS/藻类干扰涂层,记录低于每百万分之10的纪录过剩光损失。这些高性能的镜子是通过新型的微分化过程实现的,该过程与通过物理蒸气沉积过程产生的无定形多层的生产明显不同。这个新过程可减少由于低表面和界面粗糙度而导致的散射损失,而外延生长的背景掺杂量低可确保吸收大大降低。我们报告了一系列光学测量值,包括腔度,透射光谱和直接吸收测试,以揭示一组原型镜子的光损失。在这些测量过程中,我们观察到独特的极化取向损失机制,我们将其归因于这些紧张的外延多层的弹性各向异性。未来的层计数增加和相应的透射率降低将使光学谐振器在中红外光谱区域的技巧超过100 000,从而使高分辨率光谱,狭窄的线下缩放激光稳定性以及各种光 - 互动的超敏感测量值的进步。
We present high-reflectivity substrate-transferred single-crystal GaAs/AlGaAs interference coatings at a center wavelength of 4.54 um with record-low excess optical loss below 10 parts per million. These high-performance mirrors are realized via a novel microfabrication process that differs significantly from the production of amorphous multilayers generated via physical vapor deposition processes. This new process enables reduced scatter loss due to the low surface and interfacial roughness, while low background doping in epitaxial growth ensures strongly reduced absorption. We report on a suite of optical measurements, including cavity ring-down, transmittance spectroscopy, and direct absorption tests to reveal the optical losses for a set of prototype mirrors. In the course of these measurements, we observe a unique polarization-orientation-dependent loss mechanism which we attribute to elastic anisotropy of these strained epitaxial multilayers. A future increase in layer count and a corresponding reduction of transmittance will enable optical resonators with a finesse in excess of 100 000 in the mid-infrared spectral region, allowing for advances in high resolution spectroscopy, narrow-linewidth laser stabilization, and ultrasensitive measurements of various light-matter interactions.