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HgCdTe APDs for free space optical communications

机译:HgCdTe APD用于自由空间光通信

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HgCdTe avalanche photodiodes offers a new horizon for observing spatial or temporal signals containing only a few infrared (IR) photons, enabling new science, telecommunication and defence applications. The use of such detectors for free space optical communications is particularly interesting for both deep space and high data rate links as it enables wide field of view free space optical coupling to the detector at high sensitivity, down to single photon level and with a close to negligible loss of the information contained in the strongly attenuated photon flux. Measurement of the response time and dark current shows that such devices can be operated at room temperature with bandwidths up to 10 GHz in a back-side illuminated configuration. This configuration allows to use micro-lenses fabricated directly into the APD substrate and enables to use a large photosensitive area while maintaining a high bandwidth, low dark current and /or high operating temperature. We report on the expected performance 4-quadrant APD detector demonstrator with single photon sensitivity, which is currently developed to be used in deep space telecommunications by ESA and present the potential use for high data rates links of 10 Gbits/s.
机译:HgCdTe雪崩光电二极管为观察仅包含少量红外(IR)光子的空间或时间信号提供了新的视野,从而实现了新的科学,电信和国防应用。对于深空和高数据速率链路,将这种检测器用于自由空间光通信尤为令人关注,因为它可以在高灵敏度,低至单光子水平和接近光子密度的情况下,将宽视野的自由空间光耦合到检测器。强烈衰减的光子通量中包含的信息损失微不足道。响应时间和暗电流的测量表明,此类设备可以在室温下以背面照明配置在高达10 GHz的带宽下运行。这种配置允许使用直接制造在APD基板中的微透镜,并可以使用较大的感光面积,同时保持高带宽,低暗电流和/或高工作温度。我们报告了具有单光子灵敏度的预期性能的四象限APD检测器演示器,该演示器目前已开发用于ESA在深空通信中使用,并提出了10 Gbit / s的高数据速率链路的潜在用途。

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