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20242026
most citedScalability enhancement of quantum computing under limited connectivity through distributed quantum computing

1 citations · 1 across the 3 of their papers we have counts for

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quant-ph2026

Reduced State Stabilizer Rényi Entropy as a Probe of Quantum Phase Transitions in Frustrated J_1-J_2 Spin Models

George Biswas, Santanu Sarkar, Jun-Yi Wu +1

We investigate whether the second-order purity-corrected stabilizer Rényi entropy (SRE) of reduced two-qubit density matrices can serve as a reliable local indicator of quantum pha…

quant-ph2026

Reduced-State Stabilizer Rényi Entropy as a Probe of Quantum Criticality in the Transverse ANNNI Model and the Quantum Compass Model

Santanu Sarkar, George Biswas, Jun-Yi Wu +1

We investigate the effectiveness of the stabilizer Rényi entropy (SRE), a quantifier associated with non-stabilizer resources (quantum magic), as an indicator of quantum phase tran…

quant-ph2026

O3LS: Optimizing Lattice Surgery via Automatic Layout Searching and Loose Scheduling

Chenghong Zhu, Xian Wu, Jiahan Chen +4

Toward the large-scale, practical realization of quantum computing, quantum error correction is essential. Among various quantum error-correcting codes, the surface code stands out…

quant-ph2025

Entanglement-assisted circuit knitting: Distributed quantum computing using limited entanglement resources

Shao-Hua Hu, Po-Sung Liu, Jun-Yi Wu

Distributed quantum computing (DQC) provides a promising route toward scalable quantum computation, where entanglement-assisted LOCC and circuit knitting represent two complementar…

quant-ph20241 cited

Scalability enhancement of quantum computing under limited connectivity through distributed quantum computing

Shao-Hua Hu, George Biswas, Jun-Yi Wu

We employ quantum-volume random-circuit sampling to benchmark the two-QPU entanglement-assisted distributed quantum computing (DQC) and compare it with single-QPU quantum computing…