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InP-Based Active and Passive Components for Communication Systems at 2 μm

机译:基于InP的有源和无源元件,用于2μm的通信系统

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摘要

Progress on advanced active and passive photonic components that are required for high-speed optical communications over hollow-core photonic bandgap fiber at wavelengths around 2 μm is described in this paper. Single-frequency lasers capable of operating at 10 Gb/s and covering a wide spectral range are realized. A comparison is made between waveguide and surface normal photodiodes with the latter showing good sensitivity up to 15 Gb/s. Passive waveguides, 90° optical hybrids, and arrayed waveguide grating with 100-GHz channel spacing are demonstrated on a large spot-size waveguide platform. Finally, a strong electro-optic effect using the quantum confined Stark effect in strain-balanced multiple quantum wells is demonstrated and used in a Mach–Zehnder modulator capable of operating at 10 Gb/s.
机译:本文介绍了中空光子带隙光纤在2μm左右的波长上进行高速光通信所需的先进有源和无源光子组件的进展。实现了能够以10 Gb / s的速度工作并覆盖宽光谱范围的单频激光器。在波导和表面法向光电二极管之间进行了比较,后者显示出高达15 Gb / s的良好灵敏度。在大型光斑尺寸的波导平台上演示了无源波导,90°光学混合器和具有100 GHz通道间隔的阵列波导光栅。最后,在应变平衡多量子阱中使用量子约束斯塔克效应的强电光效应得到了证明,并在能够以10 Gb / s的速度运行的Mach-Zehnder调制器中使用。

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