We propose a methodology to include thermal crosstalk effects in the modeling of neuromorphic photonic circuits. Through component-level simulations of device building blocks and thermal analysis, we are able to successfully account for thermal effects, as shown by a comparison with experimental measurements of a 3×3 programmable optical circuit.

Thermal Crosstalk Effects in a Silicon Photonics Neuromorphic Network / Orlandin, Marco; Cem, Ali; Curri, Vittorio; Carena, Andrea; Ros, Francesco Da; Bardella, Paolo. - 2023-September:(2023), pp. 43-44. ( 23rd International Conference on Numerical Simulation of Optoelectronic Devices, NUSOD 2023 Torino (Ita) 18-21 September 2023) [10.1109/nusod59562.2023.10273549].

Thermal Crosstalk Effects in a Silicon Photonics Neuromorphic Network

Curri, Vittorio;Carena, Andrea;Bardella, Paolo
2023

Abstract

We propose a methodology to include thermal crosstalk effects in the modeling of neuromorphic photonic circuits. Through component-level simulations of device building blocks and thermal analysis, we are able to successfully account for thermal effects, as shown by a comparison with experimental measurements of a 3×3 programmable optical circuit.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/3005755