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20242026
most citedArbitrary control over multimode wave propagation for machine learning

6 citations · 6 across the 6 of their papers we have counts for

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physics.optics20266 cited

Arbitrary control over multimode wave propagation for machine learning

Tatsuhiro Onodera, Martin M. Stein, Benjamin A. Ash +10

Controlled multimode wave propagation can enable more space-efficient photonic processors than architectures based on discrete components connected by single-mode waveguides. Inste…

physics.optics2026

Measurement-Adapted Eigentask Representations for Photon-Limited Optical Readout

Tianyang Chen, Mandar M. Sohoni, Saeed A. Khan +5

Optical readout in low-light imaging is fundamentally limited by measurement noise, including photon shot noise, detector noise, and quantization error. In this regime, downstream…

physics.optics2026

TRON: Trainable, architecture-reconfigurable random optical neural networks

Ziao Wang, Fei Xia, Logan G. Wright +5

Deep learning has triggered explosive growth in the demand for specialized hardware processors, thus motivating the development of scalable and reconfigurable computing substrates.…

physics.optics2026

Machine vision with small numbers of detected photons per inference

Shi-Yuan Ma, Jérémie Laydevant, Mandar M. Sohoni +3

Machine vision, including object recognition and image reconstruction, is a central technology in many consumer devices and scientific instruments. The design of machine-vision sys…

physics.optics2025

Programmable on-chip nonlinear photonics

Ryotatsu Yanagimoto, Benjamin A. Ash, Mandar M. Sohoni +7

Nonlinear photonics uses coherent interactions between optical waves to engineer functionality that is not possible with purely linear optics. Traditionally, the function of a nonl…