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Broadband Nonvolatile Electrically Controlled Programmable Units in Silicon Photonics

delete2022-05-06
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OA
AI
R
Rui Chen
Z
Zhuoran Fang
J
Johannes E. Fröch
P
Peipeng Xu
J
Jiajiu Zheng
A
Arka Majumdar *
DOI:10.1021/acsphotonics.2c00452delete
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Abstract

Abstract

En 中文
Programmable photonic integrated circuits (PICs) have recently gained significant interest because of their potential in creating next-generation technologies ranging from artificial neural networks and microwave photonics to quantum information processing. The fundamental building block of such programmable PICs is a 2 x 2 programmable unit, traditionally controlled by the thermo-optic or free-carrier dispersion. However, these implementations are power-hungry and volatile and have a large footprint (typically >100 mu m). Therefore, a truly set-and-forget-type 2 x 2 programmable unit with zero static power consumption is highly desirable for large-scale PICs. Here, we report a broadband nonvolatile electrically controlled 2 x 2 programmable unit in silicon photonics based on the phase-change material Ge2Sb2Te5. The directional coupler-type programmable unit exhibits a compact coupling length (64 mu m), small insertion loss (similar to 2 dB), and minimal crosstalk (<-8 dB) across the entire telecommunication C-band while maintaining a record-high endurance of over 2800 switching cycles without significant performance degradation. This nonvolatile programmable unit constitutes a critical component for realizing future generic programmable silicon photonic systems.
Keywords:
phase-change materials
reprogrammable photonics
zero static energy
silicon photonics

Journal

ACS Photonics cover
ACS Photonics
IF:
6.7
Papers:
5.6K
Citations:
2.5W

Organization

U
University of Washington
Scholars:
8.0W
Papers: 7.0W
Citations: 12.5W