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Monitoring of optical signals from constellation diagrams measured with linear optical sampling

机译:监视通过线性光学采样测量的星座图中的光信号

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摘要

Linear optical sampling detects samples of the electric field of an optical waveform using its interference with a train of sampling pulses. This unique ability allows statistical electric-field characterization, for example, the measurement of a constellation diagram in the complex plane. From such information, one can directly track impairments that affect the phase and, more generally, the electric field of a data-encoded telecommunication channel. Constellation diagrams of 10-Gb/s phase-shift-keyed (PSK) signals are measured using a waveguide implementation of linear optical sampling. The intensity and phase fluctuations of these signals are quantified in various situations typically met in optical networks. The properties of various data-modulation schemes for phase-shift keying are investigated, and the noise induced by amplified spontaneous emission (ASE) on the electric field is directly quantified. Finally, a direct measurement of the Gordon-Mollenauer nonlinear phase noise is performed.
机译:线性光学采样会利用其对一系列采样脉冲的干扰来检测光波形电场的采样。这种独特的功能允许进行统计电场表征,例如在复杂平面中测量星座图。从这样的信息中,人们可以直接跟踪影响相位和更一般地影响数据编码电信信道电场的损害。使用线性光学采样的波导实现来测量10 Gb / s相移键控(PSK)信号的星座图。这些信号的强度和相位波动可在光网络中通常遇到的各种情况下进行量化。研究了用于相移键控的各种数据调制方案的特性,并直接量化了由电场上的放大自发辐射(ASE)引起的噪声。最后,直接测量Gordon-Mollenauer非线性相位噪声。

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