collaborators

5 papers

physics.optics2025

Ultrafast neuromorphic computing with nanophotonic optical parametric oscillators

Midya Parto, Gordon H. Y. Li, Ryoto Sekine +5

Over the past decade, artificial intelligence (AI) has led to disruptive advancements in fundamental sciences and everyday technologies. Among various machine learning algorithms,…

physics.optics2025

All-optical computing with beyond 100-GHz clock rates

Gordon H. Y. Li, Midya Parto, Jinhao Ge +9

A computer's clock rate ultimately determines the minimum time between sequential operations or instructions. Despite exponential advances in electronic computer performance owing…

cs.ET2025

Roadmap on Neuromorphic Photonics

Daniel Brunner, Bhavin J. Shastri, Mohammed A. Al Qadasi +147

This roadmap consolidates recent advances while exploring emerging applications, reflecting the remarkable diversity of hardware platforms, neuromorphic concepts, and implementatio…

physics.optics2025

Turing-Completeness and Undecidability in Coupled Nonlinear Optical Resonators

Gordon Li, Alireza Marandi

Networks of coupled nonlinear optical resonators have emerged as an important class of systems in ultrafast optical science, enabling richer and more complex nonlinear dynamics com…

physics.optics2024

Large-scale time-multiplexed nanophotonic parametric oscillators

Robert M. Gray, Ryoto Sekine, Luis Ledezma +5

Arrays of nonlinear resonators offer a fertile ground for a wide range of complex phenomena and opportunities for advanced photonic sensing and computing. Recently, significant att…