首页> 外文期刊>Applied optics >Cross talk and ghost talk in a microbeam free-space optical interconnect system with vertical-cavity surface-emitting lasers, microlenses, and metal-semiconductor-metal detectors
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Cross talk and ghost talk in a microbeam free-space optical interconnect system with vertical-cavity surface-emitting lasers, microlenses, and metal-semiconductor-metal detectors

机译:具有垂直腔表面发射激光器,微透镜和金属半导体金属探测器的微束自由空间光学互连系统中的串扰和幻像

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摘要

A diffraction-based beam-propagation model is used to study optical cross talk in microbeam free-space optical interconnection (FSOI) systems. The system consists of VCSEL's, microlenses, and metal-semiconductor-metal (MSM) detectors, with the detectors modeled as amplitude gratings with low contrast ratio (based on experimental results). Different possible cross-talk sources are studied. Results show that, in an optimized system, the cross talk caused by diffractive scattering is not an issue. However, in such systems the principal reflection from a MSM detector surface creates two problems: VCSEL coupling and ghost talk. The coupling of the reflected beam into the VCSEL's may cause power oscillation (and increase the bit error rate), whereas ghost talk will limit the distance-bandwidth product of the interconnect system. This optical system is also abstracted in HSPICE together with the laser driver and receiver circuits to analyze ghost talk in this system. Results show that at high speed (1 Gbit/s or more) these effects negatively affect system performance.
机译:基于衍射的光束传播模型用于研究微束自由空间光学互连(FSOI)系统中的光学串扰。该系统由VCSEL,微透镜和金属半导体金属(MSM)检测器组成,这些检测器被建模为具有低对比度的振幅光栅(基于实验结果)。研究了不同的可能的串扰源。结果表明,在优化的系统中,由衍射散射引起的串扰不是问题。但是,在这样的系统中,来自MSM检测器表面的主要反射会产生两个问题:VCSEL耦合和重影。反射光束耦合到VCSEL中可能会导致功率振荡(并增加误码率),而重影会限制互连系统的距离带宽乘积。该光学系统还与激光驱动器和接收器电路一起在HSPICE中进行了抽象,以分析该系统中的重影。结果表明,在高速(1 Gbit / s或更高)下,这些影响会对系统性能产生负面影响。

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