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quant-ph2026

GadIR: A Spatial-Topology Preserving Compiler for Quantum Many-Body Systems Simulation

Xiangyu Ren, Yuexun Huang, Zhaohui Yang +5

Simulating quantum many-body systems has been one of the most important applications of quantum computation. For simulation, the Hamiltonian of a physical system is compiled into q…

quant-ph2026

Photonic Quantum Computing on Spin Memory Architecture with Tree-Encoded Fusion

Xiangyu Ren, Yuexun Huang, Zhemin Zhang +4

Photonic quantum computing provides a promising route toward quantum computation by naturally supporting the measurement-based quantum computation (MBQC) model. In MBQC, programs a…

quant-ph2024

CaliScalpel: In-Situ and Fine-Grained Qubit Calibration Integrated with Surface Code Quantum Error Correction

Xiang Fang, Keyi Yin, Yuchen Zhu +8

Quantum Error Correction (QEC) is a cornerstone of fault-tolerant, large-scale quantum computing. However, qubit error drift significantly degrades QEC performance over time, neces…

quant-ph2024

Leveraging Hardware Power through Optimal Pulse Profiling for Each Qubit Pair

Yuchen Zhu, Jinglei Cheng, Boxi Li +3

In the scaling development of quantum computers, the calibration process emerges as a critical challenge. Existing calibration methods, utilizing the same pulse waveform for two-qu…

quant-ph2024

ECDQC: Efficient Compilation for Distributed Quantum Computing with Linear Layout

Kecheng Liu, Yidong Zhou, Haochen Luo +6

In this paper, we propose an efficient compilation method for distributed quantum computing (DQC) using the Linear Nearest Neighbor (LNN) architecture. By exploiting the LNN topolo…

quant-ph2024

Coqa: Blazing Fast Compiler Optimizations for QAOA

Yuchen Zhu, Yidong Zhou, Jinglei Cheng +4

The Quantum Approximate Optimization Algorithm (QAOA) is one of the most promising candidates for achieving quantum advantage over classical computers. However, existing compilers…