Sequential Monitoring and Control of a Silicon Photonic Coherent Beam Adder and Analyzer

Fuente: arXiv
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Autori principali: De Gaetano, Samuele, Crico, Monica, Ferrari, Giorgio, Sampietro, Marco, Morichetti, Francesco, Melloni, Andrea, Zanetto, Francesco
Natura: Preprint
Pubblicazione: 2025
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author De Gaetano, Samuele
Crico, Monica
Ferrari, Giorgio
Sampietro, Marco
Morichetti, Francesco
Melloni, Andrea
Zanetto, Francesco
author_facet De Gaetano, Samuele
Crico, Monica
Ferrari, Giorgio
Sampietro, Marco
Morichetti, Francesco
Melloni, Andrea
Zanetto, Francesco
contents Joint communication and sensing applications require devices that can analyze multiple electromagnetic waves and process them in real time directly in the analog domain. In optics, the growing maturity of photonic integrated platforms allows the fabrication of complex circuits that can perform such operations, but their large number of sensors and actuators requires scalable control strategies to efficiently monitor and actively stabilize their functionality at runtime. In this work, we report on a multi-aperture silicon photonic programmable circuit that operates both as a coherent beam adder and a multi-aperture beam analyzer. The circuit consists of a reconfigurable mesh of Mach-Zehnder interferometers controlled through monolithically integrated electronic circuits, which are used to serialize/deserialize the readout of integrated sensors and the driving of actuators with a time-multiplexed addressing scheme. The circuit operation is validated in a communication and sensing scenario, where the photonic chip is used to simultaneously receive a 25 Gbit/s high-speed transmission and to measure the phase difference between the input light beams.
format Preprint
id arxiv_https___arxiv_org_abs_2510_18463
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Sequential Monitoring and Control of a Silicon Photonic Coherent Beam Adder and Analyzer
De Gaetano, Samuele
Crico, Monica
Ferrari, Giorgio
Sampietro, Marco
Morichetti, Francesco
Melloni, Andrea
Zanetto, Francesco
Optics
Joint communication and sensing applications require devices that can analyze multiple electromagnetic waves and process them in real time directly in the analog domain. In optics, the growing maturity of photonic integrated platforms allows the fabrication of complex circuits that can perform such operations, but their large number of sensors and actuators requires scalable control strategies to efficiently monitor and actively stabilize their functionality at runtime. In this work, we report on a multi-aperture silicon photonic programmable circuit that operates both as a coherent beam adder and a multi-aperture beam analyzer. The circuit consists of a reconfigurable mesh of Mach-Zehnder interferometers controlled through monolithically integrated electronic circuits, which are used to serialize/deserialize the readout of integrated sensors and the driving of actuators with a time-multiplexed addressing scheme. The circuit operation is validated in a communication and sensing scenario, where the photonic chip is used to simultaneously receive a 25 Gbit/s high-speed transmission and to measure the phase difference between the input light beams.
title Sequential Monitoring and Control of a Silicon Photonic Coherent Beam Adder and Analyzer
topic Optics
url https://arxiv.org/abs/2510.18463