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WDM-Based Silicon Photonic Multi-Socket Interconnect Architecture With Automated Wavelength and Thermal Drift Compensation.

Authors :
Zanetto, Francesco
Grimaldi, Vittorio
Moralis-Pegios, Miltiadis
Pitris, Stelios
Fotiadis, Konstantinos
Alexoudi, Theonitsa
Guglielmi, Emanuele
Aguiar, Douglas
De Heyn, Peter
Ban, Yoojin
Van Campenhout, Joris
Pleros, Nikos
Ferrari, Giorgio
Sampietro, Marco
Melloni, Andrea
Source :
Journal of Lightwave Technology; 11/1/2020, Vol. 38 Issue 21, p6000-6006, 7p
Publication Year :
2020

Abstract

A silicon photonic circuit comprising all the building blocks necessary to demonstrate optical communication between two sockets interconnected through an Arrayed Waveguide Grating Router (AWGR) is reported. The article focuses on the robustness of the interconnection scheme to the unavoidable wavelength and thermal fluctuations observed in real datacenter environments. To improve the reliability of the system, a feedback control mechanism, based on contactless integrated photonic probes (CLIPP) and heater actuators, is added to the interconnection to monitor in parallel the working point of each sensitive device and keep it locked in real-time. Experimental results demonstrate successful operations in a 30 Gbit/s data routing scenario at 5 ⋅ 10<superscript>−11</superscript> bit error rate, irrespective of sudden wavelength shifts of up to 200 pm or of iterated thermal variations in a 10° C temperature range, with a recovery time of around 30 ms. These results prove that AWGR-based interconnections equipped with real-time drift compensation systems can be a viable option in multi-socket layouts even in highly demanding environments. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07338724
Volume :
38
Issue :
21
Database :
Complementary Index
Journal :
Journal of Lightwave Technology
Publication Type :
Academic Journal
Accession number :
147319198
Full Text :
https://doi.org/10.1109/JLT.2020.3008001