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Heterostructure Phototransistor Arrays for Free-Space Laser Communications

机译:用于自由空间激光通信的异质光电晶体管阵列

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We explore using heterostructure phototransistors (HPT) to reduce the complexity and, hence, the size, weight, and power (SWaP) of a space borne laser communications system, by combining pointing/acquisition/tracking (PAT) and wideband communications functions in a single sensor assembly. Benefits of this approach include a reduced number of sensor elements, fewer receive optical paths requiring alignment over life, and subsequent SWaP improvements in interface electronics. Because of the uniform gain without excess noise, HPT arrays are expected to have superior performance compared to PIN and APD photodiodes for receive sensitivity or signal-to-noise ratio required for communication and/or PAT functions. The HPT also offers the potential to remove the point-ahead mirror, if the sensor is used in a look-behind mode, and, in the ultimate scenario, the sensor would be sampled at the data rate, if the FOV is sufficient to encompass the entire jitter spectrum, thus, negating the need for a fast steering mirror (FSM) for beam stabilization.
机译:我们通过组合指点/采集/跟踪(PAT)和宽带通信功能,使用异质结构光电转换器(HPT)来降低空间传播激光通信系统的复杂性和,因此,尺寸,重量和功率(交换),并在单传感器组件。这种方法的益处包括减少的传感器元件,较少的接收光路需要对准寿命,以及随后的界面电子器件的交换改进。由于没有过度噪声的均匀增益,与引脚和APD光电二极管相比,HPT阵列预计将具有优异的性能,用于接收通信和/或PAT功能所需的灵敏度或信噪比。 HPT还提供了拆卸点前镜的可能性,如果传感器用于外观模式,并且在最终场景中,如果FOV足以包围,则将以数据速率进行采样。因此,整个抖动光谱,否定了对光束稳定的快速转向镜(FSM)的需要。

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