activity
20242026
collaborators

7 papers

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

Simulating general noise nearly as cheaply as Pauli noise

Mark Myers, Mariesa H. Teo, Rajesh Mishra +2

Stabilizer simulation of Clifford quantum circuits - error-correction circuits, Clifford subroutines, etc. - on classical computers has played a central role in our understanding o…

quant-ph2026

Spacetime-Efficient and Hardware-Compatible Complex Quantum Logic Units in qLDPC Codes

Willers Yang, Jason Chadwick, Mariesa H. Teo +2

Quantum low-density parity-check (qLDPC) codes offer a promising route to scalable fault-tolerant quantum computing due to their substantially reduced footprint. However, these gai…

quant-ph2025

Toward Quantum-Enabled Biomarker Discovery: An Outlook from Q4Bio

Dhirpal Shah, Mariesa Teo, Ryan A. Robinett +12

We present a case study and forward-looking perspective on co-design for hybrid quantum-classical algorithms, centered on the goal of empirical quantum advantage (EQA), which we de…

quant-ph2025

Erasure Minesweeper: exploring hybrid-erasure surface code architectures for efficient quantum error correction

Jason D. Chadwick, Mariesa H. Teo, Joshua Viszlai +2

Dual-rail erasure qubits can substantially improve the efficiency of quantum error correction, allowing lower error rates to be achieved with fewer qubits, but each erasure qubit r…

quant-ph2025

k-Contextuality as a Heuristic for Memory Separations in Learning

Mariesa H. Teo, Willers Yang, James Sud +3

Classical machine learning models struggle with learning and prediction tasks on data sets exhibiting long-range correlations. Previously, the existence of a long-range correlation…