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quant-ph2026

FTPrimitiveBench: A Benchmark Suite For Logical Computation Under Hardware-Motivated and Biased Noise Models

Shuwen Kan, Adrian Harkness, Zefan Du +5

Fault-tolerant quantum computing requires understanding how error-correcting codes perform on diverse physical hardware. This is typically assessed via noisy stabilizer simulation…

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-ph2025

Optimizing Inter-chip Coupler Link Placement for Modular and Chiplet Quantum Systems

Zefan Du, Pedro Chumpitaz Flores, Wenqi Wei +3

Quantum computing offers unparalleled computational capabilities but faces significant challenges, including limited qubit counts, diverse hardware topologies, and dynamic noise an…

quant-ph2025

Hardware-aware Compilation for Chip-to-Chip Coupler-Connected Modular Quantum Systems

Zefan Du, Shuwen Kan, Samuel Stein +3

As quantum processors scale, monolithic architectures face growing challenges due to limited qubit density, heterogeneous error profiles, and restricted connectivity. Modular quant…

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…

quant-ph2024

Scalable Circuit Cutting and Scheduling in a Resource-constrained and Distributed Quantum System

Shuwen Kan, Zefan Du, Miguel Palma +6

Despite quantum computing's rapid development, current systems remain limited in practical applications due to their limited qubit count and quality. Various technologies, such as…