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20242026
most citedUltra-low loss piezo-optomechanical low-confinement silicon nitride platform for visible wavelength quantum photonic circuits

1 citations · 1 across the 4 of their papers we have counts for

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physics.optics2026

Micro-electromechanical photonic integrated memristors

Matthew Zimmermann, Julia M. Boyle, Hardit Singh +7

Programmable optical memristors embedded in photonic integrated circuits (PICs) are emerging as an important technology for high-speed optical storage and in-memory optical computi…

physics.optics2026

Monolithic Integration of Piezo-Optomechanical Photonics and CMOS Electronics

Matthew Zimmermann, Aileen Zhai, Andrew J. Leenheer +10

Next-generation photonic architectures for AI, sensing, and quantum computing require thousands to millions of reprogrammable photonic devices on a chip[1]. The monolithic integrat…

physics.optics20261 cited

Ultra-low loss piezo-optomechanical low-confinement silicon nitride platform for visible wavelength quantum photonic circuits

Mayank Mishra, Gwangho Choi, Wenhua He +7

The stringent demands of photonic quantum computing protocols motivate photonic integrated circuit (PIC) platforms with passive optical properties such as extremely low losses and…

physics.optics2025

Hybrid electrostatic-piezo MEMS photonic integrated modulators

Thuy-Linh Le, Hardit Singh, Julia M. Boyle +5

Programmable photonic integrated circuits (PICs) have recently emerged as an important technology for quantum information science and artificial neural networks. In particular, PIC…

physics.optics2025

CMOS-fabricated ultraviolet light modulators using low-loss alumina piezo-optomechanical photonic circuits

Zachary A. Castillo, Roman Shugayev, Daniel Dominguez +6

Ultra-violet (UV) and near-UV wavelengths are necessary for many important optical transitions for quantum technologies and various sensing mechanisms for biological and chemical d…

physics.optics2025

Nanophotonic waveguide chip-to-free-space beam scanning at 68 Million Spots/(smm)

Matt Saha, Y. Henry Wen, Andrew S. Greenspon +11

A seamless chip-to-world photonic interface enables wide-ranging advancements in optical ranging, display, communication, computation, imaging, and light-matter interaction. An opt…