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1550 nm modulating retroreflector based on coated nanoparticles for free-space optical communication

机译:基于涂层纳米粒子的1550 nm调制后向反射器,用于自由空间光通信

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Nowadays, there is a renaissance in the field of space exploration. Current and future missions depend on astronauts and a swarm of robots for reconnaissance. In order to reduce the power consumption, weight, and size of the robots, an asymmetric communication system may be used. This is achieved by installing modulating retroreflectors (MRRs) on one side of the link and an interrogating laser on the other side. In this paper, we theoretically study an innovative device that can serve as an MRR in the infrared range of the spectrum. The device is based on a ferroelectric PZT thin film containing TiO2 coated Ag nanoparticles, which exhibit strong plasmonic resonance in the infrared range. After intensive analyses, which included calculations and simulations, we were able to design the device to operate at the 1550 nm wavelength. This is of great importance since the design of devices operating at 1550 nm as this wavelength is a mature technology widely used in free-space optics. Hence, this MRR can serve in asymmetric communication links relying on 1550 nm transmissions, which are also eye-safe. To the best of our knowledge, this is the first time coated metal nanoparticles have been proposed to modulate light in the infrared region. The performance of this device is unique, reaching a 17.5 dB modulation contrast with only a +/- 2 V operating voltage. This modulator may also be used for terrestrial communication such as fiber optics and optical interconnects in future data centers. (C) 2015 Optical Society of America
机译:如今,太空探索领域正在复兴。当前和将来的任务取决于宇航员和一大批机器人进行侦察。为了减少机器人的功耗,重量和尺寸,可以使用非对称通信系统。这是通过在链路的一侧安装调制后向反射器(MRR)并在另一侧安装询问激光器来实现的。在本文中,我们从理论上研究了一种可以在光谱的红外范围内充当MRR的创新设备。该设备基于铁电PZT薄膜,该薄膜包含TiO2包覆的Ag纳米颗粒,在红外范围内显示出强大的等离子体共振。经过深入的分析(包括计算和仿真),我们能够设计出可在1550 nm波长下工作的器件。这一点非常重要,因为设计工作在1550 nm的设备是因为该波长是一种广泛用于自由空间光学的成熟技术。因此,此MRR可以在依赖于1550 nm传输的非对称通信链路中使用,这也是人眼安全的。据我们所知,这是首次提出涂覆金属纳米颗粒来调制红外区域的光。该设备的性能是独一无二的,仅在+/- 2 V的工作电压下即可达到17.5 dB的调制对比度。该调制器还可以用于未来的数据中心中的地面通信,例如光纤和光学互连。 (C)2015年美国眼镜学会

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