collaborators

5 papers

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…

quant-ph2026

Foundry-Enabled Patterning of Diamond Quantum Microchiplets for Scalable Quantum Photonics

Jawaher Almutlaq, Alessandro Buzzi, Anders Khaykin +6

Quantum technologies promise secure communication networks and powerful new forms of information processing, but building these systems at scale remains a major challenge. Diamond…

quant-ph2025

An integrated photonics platform for high-speed, ultrahigh-extinction, many-channel quantum control

Mengdi Zhao, Manuj Singh, Anshuman Singh +10

High-fidelity control of the thousands to millions of programmable qubits needed for utility-scale quantum computers presents a formidable challenge for control systems. In leading…

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…

quant-ph2025

Scalable low loss cryogenic packaging of quantum memories in CMOS-foundry processed photonic chips

Robert Bernson, Alex Witte, Genevieve Clark +10

Optically linked solid-state quantum memories such as color centers in diamond are a promising platform for distributed quantum information processing and networking. Photonic inte…