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20232026
most citedSuperGrad: a differentiable simulator for superconducting processors

2 citations · 2 across the 2 of their papers we have counts for

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quant-ph2026

Quantum Compiler Design for Fault-Tolerant Quantum Computing

Chenghong Zhu, Jiahan Chen, Keming He +9

Scalable quantum computation is expected to rely on fault-tolerant quantum computation (FTQC), in which quantum error correction (QEC) suppresses physical errors sufficiently to su…

quant-ph2025

A simple universal routing strategy for reducing the connectivity requirements of quantum LDPC codes

Guangqi Zhao, Fei Yan, Xiaotong Ni

Quantum low-density parity-check codes reduce quantum error correction overhead but require dense, long-range connectivity that challenges hardware implementation, particularly for…

quant-ph20242 cited

SuperGrad: a differentiable simulator for superconducting processors

Ziang Wang, Feng Wu, Hui-Hai Zhao +2

One significant advantage of superconducting processors is their extensive design flexibility, which encompasses various types of qubits and interactions. Given the large number of…

quant-ph2023

Superconducting processor design optimization for quantum error correction performance

Xiaotong Ni, Ziang Wang, Rui Chao +1

In the quest for fault-tolerant quantum computation using superconducting processors, accurate performance assessment and continuous design optimization stands at the forefront. To…

quant-ph2023

A Classical Architecture For Digital Quantum Computers

Fang Zhang, Xing Zhu, Rui Chao +15

Scaling bottlenecks the making of digital quantum computers, posing challenges from both the quantum and the classical components. We present a classical architecture to cope with…