collaborators

5 papers

quant-ph2026

SupercheQ: Quantum Advantage for Distributed Databases

E. R. Anschuetz, P. Gokhale, B. Tonekaboni +18

We introduce Supercheq, a family of quantum protocols that achieves asymptotic advantage over classical protocols for checking the equivalence of files, a task also known as finger…

quant-ph2026

Demonstration of a Logical Architecture Uniting Motion and In-Place Entanglement

Rich Rines, Benjamin Hall, Mariesa H. Teo +35

We demonstrate a logical neutral atom architecture that integrates atom motion with in-place entanglement to achieve lower overheads than entangling-zone approaches. Using a 114-qu…

quant-ph2026

Resource Estimation via Efficient Compilation of Key Quantum Primitives

Colin Campbell, Rich Rines, Victory Omole +6

Resource estimation is a significant challenge in evaluating fault tolerant quantum computers. Existing approaches often rely on either fixed architectural assumptions or coarse an…

quant-ph2026

Quantum Depth Compression via Local Dynamic Circuits

Benjamin Hall, Palash Goiporia, Rich Rines

We present Quantum Depth Compression (QDC), a general compilation framework that utilizes dynamic circuits to reduce arbitrary quantum circuits to depth linear in the number of non…

quant-ph2025

A universal neutral-atom quantum computer with individual optical addressing and non-destructive readout

A. G. Radnaev, W. C. Chung, D. C. Cole +55

Quantum computers must achieve large-scale, fault-tolerant operation to deliver on their promise of transformational processing power [1-4]. This will require thousands or millions…