微波光子学器件

J. Bowers
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引用次数: 1

摘要

微波光子学由于在许多方面的突破而取得了很大的进步。在光纤放大器、光纤源和光纤接收器方面的突破都大大提高了系统的性能,并使微波光子网络发生了重大的发展。作者依次讨论了这些要素。微波光子学有许多应用,包括蜂窝网络的光纤信号分配、相控阵雷达和有线电视。这些应用对带宽的要求不断提高,提高了中心频率,增加了对微波光子学的需求,以降低损耗、色散、串扰和成本。这也导致这些网络从较小的低频网络(0.88 /spl mu/m)发展到较大的高频网络(1.3和1.5 /spl mu/m)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Devices for microwave photonics
Microwave photonics has advanced greatly as a result of breakthroughs on many fronts. Breakthroughs in fiber amplifiers, sources and receivers have all resulted in greatly increased system performance, and significant evolution of microwave photonic networks has occurred. The author discusses these elements in turn. There are many applications of microwave photonics, including fiber optic distribution of signals for cellular networks, phase array radars, and cable TV. Bandwidth requirements in these applications keep increasing, driving up the center frequency and increasing the need for microwave photonics to reduce the loss, dispersion, crosstalk and cost. This is also causing an evolution in these networks from smaller, lower frequency networks at 0.88 /spl mu/m to larger, higher frequency networks at 1.3 and 1.5 /spl mu/m.
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