Gazman Alexander, Manzhosov Evgeny, Browning Colm, Bahadori Meisam, London Yanir, Barry Liam, Bergman Keren
Opt Express. 2018 Dec 10;26(25):32662-32674. doi: 10.1364/OE.26.032662.
We leverage the photo-conductance (PC) effect in doped phase-shifter heaters for both controlling and calibrating Mach-Zehnder interferometer (MZI) switch elements. Both the steady-state and the transient response are experimentally characterized, and compact models for the PC current are developed. Utilizing the PC effect, a topology-agnostic algorithm is then outlined. The calibration procedure is experimentally verified against calibration with external photo-detectors using a non-blocking 4×4 Benes switch consisting of six 2×2 MZIs. It is shown that our PC-based approach agrees with the PD-based procedure within less than 2.5% of difference between the obtained calibrated values. Based on the calibrated PC values, all possible routing configurations are measured for extinction ratio (9.92-21.51dB), insertion loss (0.88-4.59dB), and exhibiting performances far below the 7% FEC limit (bit error rate of 3.8 × 10 ) using 25 Gbps 4-level pulse-amplitude-modulation signals (PAM4).
我们利用掺杂相移器加热器中的光电导(PC)效应来控制和校准马赫-曾德尔干涉仪(MZI)开关元件。对稳态和瞬态响应都进行了实验表征,并开发了PC电流的紧凑模型。然后利用PC效应概述了一种与拓扑无关的算法。使用由六个2×2 MZI组成的非阻塞4×4贝内斯开关,通过实验验证了校准程序与使用外部光电探测器进行校准的一致性。结果表明,我们基于PC的方法与基于光电探测器的程序在获得的校准值之间的差异小于2.5%。基于校准后的PC值,测量了所有可能的路由配置的消光比(9.92 - 21.51dB)、插入损耗(0.88 - 4.59dB),并且使用25 Gbps 4电平脉冲幅度调制信号(PAM4)时,其性能远低于7%的前向纠错(FEC)极限(误码率为3.8×10 )。