collaborators

15 papers

quant-ph2026

Strategic Plan for Neutral Atom Quantum Computation

Adrian J. Menssen, Tout Wang, Michael Gullans +54

We present a strategic plan for neutral atom quantum computation, bringing together hardware development and theory advancements to achieve the goal of practical quantum advantage.…

physics.optics2026

Heterogeneously Integrated Balanced Photodetector on an Ultra-Low Loss Silicon Nitride Delay Line Interferometer

Rahul Chawlani, Fatemehsadat Tabatabaei, Mark W. Harrington +7

Thin core silicon nitride photonics enables ultra-low loss, CMOS foundry compatible integration that supports wavelengths from the visible to shortwave infrared. Applications that…

physics.optics2026

Ultra-Low-Noise Brillouin Hybrid Synthetic Laser for Sub-Hertz Lattice Clock Spectroscopy

Meiting Song, Stefan Lannig, Dahyeon Lee +9

Frequency-stable lasers enable high-fidelity quantum state manipulation, which forms the basis of optical atomic clocks, quantum sensing, and quantum computation. Performing state…

physics.optics2026

Versatile CMOS modulation-free self-isolating stabilized precision lasers on a chip

David A. S. Heim, Kaikai Liu, Rahul Chawlani +2

Ultra-low-noise stabilized lasers are a fundamental tool for precision quantum technologies, optical clocks, microwave and millimeter-wave generation, and fiber sensing. Existing s…

physics.atom-ph2026

A narrow-linewidth Brillouin laser for a two-photon rubidium frequency standard

Kyle W. Martin, River Beard, Andrei Isichenko +5

High precision portable and deployable frequency standards are required for modern navigation and communication technologies. Optical frequency standards are attractive for their i…

physics.optics2026

Self-aligned optical microcomb emerging between octave separated lasers

Grégory Moille, Pradyoth Shandilya, Jordan Stone +11

Optical frequency combs (OFCs) are frequency rulers essential for precision metrology, next generation navigation, and testing of fundamental physics. Despite intense efforts, chip…