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Global calibration of large-scale photonic integrated circuits

Authors :
Zheng, Jin-Hao
Wang, Qin-Qin
Feng, Lan-Tian
Ding, Yu-Yang
Xu, Xiao-Ye
Ren, Xi-Feng
Li, Chuan-Feng
Guo, Guang-Can
Publication Year :
2024

Abstract

The advancing maturity of photonic integrated circuit (PIC) fabrication technology enables the high integration of an increasing number of optical components onto a single chip. With the incremental circuit complexity, the calibration of active phase shifters in a large-scale PIC becomes a crucially important issue. The traditional one-by-one calibration techniques encounter significant hurdles with the propagation of calibration errors, and achieving the decoupling of all phase shifters for independent calibration is not straightforward. To address this issue, we propose a machine-learning approach for globally calibrating the large-scale PIC. Our method utilizes a custom network to simultaneously learn the nonlinear phase-current relations for all thermo-optic phase shifters on the PIC by minimizing the negative likelihood of the measurement datasets. Moreover, the reflectivities of all static beamsplitter components can also be synchronizedly extracted using this calibration method. As an example, a quantum walk PIC with a circuit depth of 12 is calibrated, and a programmable discrete-time quantum walk is experimentally demonstrated. These results will greatly benefit the applications of large-scale PICs in photonic quantum information processing.<br />Comment: 9 pages, 5 figures, and comments are welcome

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2407.02207
Document Type :
Working Paper