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A novel monolithic beam steering high power transmitter for low cost free space optical wireless links

机译:一种用于低成本自由空间光学无线链路的新型单片波束控制大功率发射机

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A novel transmitter for directed-beam infra-red wireless that utilizes a combination of both gain-guiding and index-guiding mechanism to ameliorate the shortcoming of the state-of-the-art technology is proposed and demonstrated. The 3mm long tapered laser consists of an index-guided ridge straight section and a gain-guided tapered section with a full angle of 6°. By implementing multiple contact with a sufficiently high inter-contact resistance, discrete switching between different angles can be obtained by selectively pumping current to different contact (gain-guiding effect), while fine-tuning of a given angle can be achieved by adjusting the injection current of nearby contacts (index-guiding effect). The tapered laser's metal cover is removed using focus ion beam etching technique to form three separate sections: base section as filter, left section and right section for beam steering. The device is biased by current pulses of 1 μs width and 0.1% duty cycle. With a 1.6A injection current, an output power of 2W is achieved, which would be suitable to overcome large free space optical loss and facilitate the use of transmitting methods. The beam profile steered by 3.2° and -5.4° from the central lobe when injection current is limited to the left and right section respectively is measured. It is also observed that as injection current increases, the beam profile is steered towards the central position. This is because as the injection current increases, the local refractive index is decreased, thereby shifting the beam profile towards the opposite direction.
机译:提出并证明了一种新颖的定向光束红外无线发射机,该发射机结合了增益导引和索引导引机制,以改善现有技术的缺点。 3毫米长的锥形激光器由一个折射率引导的脊直线部分和一个增益引导的锥形部分组成,其全角为6°。通过以足够高的接触电阻实现多次接触,可以通过选择性地将电流泵送到不同的接触点(增益效应)来获得不同角度之间的离散切换(增益引导作用),而通过调整注入可以实现给定角度的微调附近接触点的电流(导引作用)。使用聚焦离子束蚀刻技术去除锥形激光器的金属盖,以形成三个独立的部分:作为过滤器的基础部分,用于光束控制的左部分和右部分。器件通过1μs宽度和0.1%占空比的电流脉冲偏置。在注入电流为1.6A的情况下,可获得2W的输出功率,这将适合克服较大的自由空间光损耗并促进发射方法的使用。当注入电流分别限制在左侧和右侧时,测量从中心波瓣分别偏转3.2°和-5.4°的光束轮廓。还可以观察到,随着注入电流的增加,光束轮廓会转向中心位置。这是因为随着注入电流的增加,局部折射率减小,从而使光束轮廓朝相反的方向移动。

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