首页> 外文会议>Conference on Free-Space Laser Communication Technology XV Jan 28, 2003 San Jose, California, USA >Cat's eye quantum well modulating retro-reflectors for free-space optical communications
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Cat's eye quantum well modulating retro-reflectors for free-space optical communications

机译:猫眼量子阱调制后向反射镜,用于自由空间光通信

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Modulating retro-reflectors (MRR) couple passive optical retro-reflectors with electro-optic modulators to allow free-space optical communication with a laser and pointing/acquisition/tracking system required on only one end of the link. In operation a conventional free space optical communications terminal, the interrogator, is used on one end of the link to illuminate the MRR on the other end of the link with a cw beam. The MRR imposes a modulation on the interrogating beam and passively retro-reflects it back to the interrogator. These types of systems are attractive for asymmetric communication links for which one end of the link cannot afford the weight, power or expense of a conventional free-space optical communication terminal. Recently, MRR using multiple quantum well (MQW) modulators have been demonstrated using a large area MQW placed in front of the aperture of a corner-cube. For the MQW MRR, the maximum modulation can range into the gigahertz, limited only by the RC time constant of the device. This limitation, however, is a serious one. The optical aperture of an MRR cannot be too small or the amount of light retro-reflected will be insufficient to close the link. For typical corner-cube MQW MRR devices the modulator has a diameter between 0.5-1 cm and maximum modulation rates less than 10 Mbps. In this paper we describe a new kind of MQW MRR that uses a cat's eye retro-reflector with the MQW in the focal plane of the cat's eye. This system decouples the size of the modulator from the size of the optical aperture and allows much higher data rates. A 40 Mbps device has been demonstrated.
机译:调制回射器(MRR)将无源光学回射器与电光调制器耦合在一起,以允许仅在链路的一端与激光器和指向/获取/跟踪系统进行自由空间光通信。在操作中,在链路的一端使用常规的自由空间光通信终端,即询问器,以用cw光束照射链路的另一端上的MRR。 MRR在询问光束上施加调制,然后将其被动回射回询问器。这些类型的系统对于非对称通信链路是有吸引力的,对于该非对称通信链路,链路的一端不能承受传统的自由空间光通信终端的重量,功率或费用。最近,使用放置在角形立方体孔径前面的大面积MQW,已经证明了使用多个量子阱(MQW)调制器的MRR。对于MQW MRR,最大调制范围可以达到千兆赫,仅受设备的RC时间常数限制。但是,这一限制是一个严重的限制。 MRR的光学孔径不能太小,否则回射光量不足以关闭链路。对于典型的角corner式MQW MRR器件,调制器的直径在0.5-1 cm之间,最大调制速率小于10 Mbps。在本文中,我们描述了一种新型的MQW MRR,它使用猫眼后向反射器,并且MQW位于猫眼的焦平面上。该系统使调制器的尺寸与光学孔径的尺寸分离,并允许更高的数据速率。已经演示了40 Mbps的设备。

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