collaborators

6 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.…

quant-ph2026

Deep Reinforcement Learning for Individual Atomic Control and Cooling

Matthew L. Peters, Guoqing Wang, David C. Spierings +5

Real-time feedback control of quantum systems is often limited by partial observations, nonlinear dynamics and measurement noise, which make accurate model-based controllers diffic…

quant-ph2026

Improved delta-kick cooling with multiple nonideal kicks

Harshil Neeraj, David C. Spierings, Joseph McGowan +2

Delta-kick cooling is a technique employed to achieve low kinetic temperatures by decreasing momentum width at the cost of increased position width. In an ideal implementation, thi…

quant-ph2026

Mode multiplexing for scalable cavity-enhanced operations in neutral-atom arrays

Ziv Aqua, Matthew L. Peters, David C. Spierings +4

Neutral atom arrays provide a versatile platform for quantum information processing. However, in large-scale arrays, efficient photon collection remains a bottleneck for key tasks…

physics.atom-ph2026

Loading and Imaging Atom Arrays via Electromagnetically Induced Transparency

Emily H. Qiu, Tamara Å umarac, Peiran Niu +9

Arrays of neutral atoms present a promising system for quantum computing, quantum sensors, and other applications, several of which would profit from the ability to load, cool, and…

quant-ph2025

Programmable few-atom Bragg scattering and ground-state cooling in a cavity

Guoqing Wang, David C. Spierings, Matthew L. Peters +3

By integrating tweezer arrays with a high-cooperativity ring cavity with chiral atom-cavity coupling, we demonstrate highly directional Bragg scattering from a programmable number…