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High linearity silicon modulator capable of actively compensating input distortion

机译:高线性硅调制器能够主动补偿输入失真

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In this Letter, we demonstrate an ultra-high linearity silicon carrier-depletion-based modulator by integrating a dual-parallel Mach-Zehnder modulator (DP-MZM) with a 1 x 2 thermo-optical switch. The operation principle is to manipulate power distributions of RF and optical signals among the two sub-MZMs, so their third-order nonlinearities can cancel each other. Spurious-free dynamic ranges (SFDRs) for the third-order intermodulation distortion (IMD3) are measured to be 123/120 dB . Hz(6/7) at 1/10 GHz, which represents a record-high linearity achieved with silicon-based modulators. As a contrast, SFDRs of a reference single MZM are 113/108 dB . Hz(4/5) at the same frequencies. Furthermore, we first demonstrate that this device is able to actively compensate nonlinear distortions of RF driving signals in the optical domain. Carrier-todistortion ratios (CDRs) of deliberately distorted two-tone signals are improved from 40/50 dB to 45/72 dB after the modulation. (C) 2020 Optical Society of America
机译:在这封信中,我们通过将双平行马赫 - Zehnder调制器(DP-MZM)与1×2热光开关集成来展示基于超高线性硅载体耗尽的调制器。操作原理是操纵两个子MZMS中RF和光信号的功率分布,因此它们的三阶非线性可以互相抵消。用于三阶互调失真(IMD3)的无杂散动态范围(SFDR)为123/120 dB。 Hz(6/7)在1/10 GHz,表示通过基于硅的调节剂实现的记录高线性度。作为对比度,参考单mzm的SFDR为113/108 dB。 Hz(4/5)在相同的频率下。此外,我们首先证明该设备能够主动补偿光学域中的RF驱动信号的非线性扭曲。在调制后,故意失真的双音信号的载波待变化的双音信号的比率(CDR)从40/50 dB改善到45/72 dB。 (c)2020美国光学学会

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