activity
20242026
most citedOptimizing Quantum Communication for Quantum Data Centers with Reconfigurable Networks

1 citations · 1 across the 14 of their papers we have counts for

collaborators

15 papers

quant-ph2026

QASMTrans: An End-to-End QASM Compilation Framework with Pulse Generation for Near-Term Quantum Devices

Aaron Hoyt, Meng Wang, Fei Hua +8

QASMTrans is a lightweight, high-performance, C++-based quantum compiler that bridges abstract quantum algorithms to device-level control and is designed for just-in-time (JIT) dep…

quant-ph2026

Computer Science Challenges in Quantum Computing: Early Fault-Tolerance and Beyond

Jens Palsberg, Jason Cong, Yufei Ding +7

Quantum computing is entering a period in which progress will be shaped as much by advances in computer science as by improvements in hardware. The central thesis of this report is…

quant-ph2026

Calibration-Conditioned FiLM Decoders for Low-Latency Decoding of Quantum Error Correction Evaluated on IBM Repetition-Code Experiments

Samuel Stein, Shuwen Kan, Chenxu Liu +6

Real-time decoding of quantum error correction (QEC) is essential for enabling fault-tolerant quantum computation. A practical decoder must operate with high accuracy at low latenc…

quant-ph2026

Bridging Superconducting and Neutral-Atom Platforms for Efficient Fault-Tolerant Quantum Architectures

Xiang Fang, Jixuan Ruan, Sharanya Prabhu +4

The transition to the fault-tolerant era exposes the limitations of homogeneous quantum systems, where no single qubit modality simultaneously offers optimal operation speed, conne…

quant-ph2025

Tableau-Based Framework for Efficient Logical Quantum Compilation

Meng Wang, Chenxu Liu, Sean Garner +4

Quantum computing holds the promise of solving problems intractable for classical computers, but practical large-scale quantum computation requires error correction to protect agai…

quant-ph2025

SPARO: Surface-code Pauli-based Architectural Resource Optimization for Fault-tolerant Quantum Computing

Shuwen Kan, Zefan Du, Chenxu Liu +5

Surface codes represent a leading approach for quantum error correction (QEC), offering a path towards universal fault-tolerant quantum computing (FTQC). However, efficiently imple…