6 papers
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.…
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…
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…
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…
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…
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…