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Published on: June 8, 2018
Fundamental Building Blocks for Scalable Photonic Programmable Processors
Cristina Gómez-Hidalgo1,2, Juan Fernández-Vicente1, Natalia Balbastre-Benavent1
1iPronics Programmable Photonics S.L. Valencia Spain.
Abstract:
Photonics technology is emerging as a key enabler, complementing electronics in next-generation applications by offering greater bandwidth, lower latency and improved energy efficiency. Silicon photonic programmable processors bring these advantages to a solid-state platform, providing compact form factors and low power consumption, although the scalability of densely integrated circuits is still under active investigation. In this article, we present a comprehensive study of the essential photonic components required for large-scale integration of silicon photonic processors, covering both design and experimental demonstration. We analyse and optimise the fundamental building blocks-including splitters, phase shifters, and crossings-and experimentally validate their scalability through wafer-scale characterisation. To finish, we illustrate the impact at the circuit level in a optical switch loaded with high-speed transmission and discuss the remaining challenges for large-scale integration.

