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Design and fabrication of a resonant mirror for locking blue laser diodes

机译:用于锁定蓝色激光二极管的谐振镜的设计和制造

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The recent development and refinement of Gallium nitride (GaN) semiconductor devices has produced both blue light emitting diodes (LEDs) and laser diodes, which provide an efficient means to obtain high emission powers in the blue spectral range. Such sources have potential applications in both imaging and communication systems. However, many applications require precise control over the spectral emission from these devices and the current blue laser diodes lack this ability. In this paper, we demonstrate a method to control the spectral emission from GaN blue laser diodes. We present the simulation and subsequent fabrication of a guided-mode resonance filter (GMRF) that can be used to lock the output wavelength of a GaN blue laser diode. Successful locking of the emission wavelength with respect to fluctuations in the surrounding environment addresses challenges associated with communication systems. Our experiment uses an optical cavity with a GaN blue laser diode source and an on-axis narrowband GMRF fabricated for 445.2 nm. Based on spectral drift of the diode emission caused by an increase in input current, experimental measurements were taken with the GMRF installed to verify wavelength locking capability.
机译:近期氮化镓(GaN)半导体器件的开发和改进已经产生了蓝色发光二极管(LED)和激光二极管,其提供了在蓝色光谱范围内获得高发射功率的有效手段。这些来源在成像和通信系统中具有潜在的应用。然而,许多应用需要精确控制来自这些器件的光谱发射,并且电流的蓝色激光二极管缺乏这种能力。在本文中,我们证明了一种控制来自GaN蓝激光二极管的光谱发射的方法。我们介绍了可用于锁定GaN蓝色激光二极管的输出波长的引导模式谐振滤波器(GMRF)的模拟和随后的制造。成功锁定发光波长相对于周围环境的波动解决了与通信系统相关的挑战。我们的实验使用具有GaN蓝色激光二极管源的光学腔和轴上的窄带GMRF,用于445.2nm。基于由输入电流的增加引起的二极管发射的光谱漂移,安装了GMRF的实验测量以验证波长锁定能力。

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