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20182026
most citedHybrid quantum-classical algorithms and quantum error mitigation

535 citations · 547 across the 4 of their papers we have counts for

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10 papers · 1 filter

quant-ph2026

Symmetry Constrained Quantum Error Mitigation for the Schwinger Model

Alexander Tomlinson, Graham Van Goffrier, Bipasha Chakraborty +1

Quantum error mitigation (QEM) is at the very heart of near-term quantum simulations and lattice gauge theories are no exceptions, rather their physical symmetries provide natural…

quant-ph2023

Pipeline quantum processor architecture for silicon spin qubits

S. M. Patomäki, M. F. Gonzalez-Zalba, M. A. Fogarty +3

Noisy intermediate-scale quantum (NISQ) devices seek to achieve quantum advantage over classical systems without the use of full quantum error correction. We propose a NISQ process…

quant-ph202112 cited

Resource-efficient Purification-based Quantum Error Mitigation

Zhenyu Cai

To achieve the practical applications of near-term noisy quantum devices, low-cost ways to mitigate the noise damages in the devices are essential. In many applications, the noisel…

quant-ph2021

Quantum Error Mitigation using Symmetry Expansion

Zhenyu Cai

Even with the recent rapid developments in quantum hardware, noise remains the biggest challenge for the practical applications of any near-term quantum devices. Full quantum error…

quant-ph2020535 cited

Hybrid quantum-classical algorithms and quantum error mitigation

Suguru Endo, Zhenyu Cai, Simon C. Benjamin +1

Quantum computers can exploit a Hilbert space whose dimension increases exponentially with the number of qubits. In experiment, quantum supremacy has recently been achieved by the…

quant-ph2019

Resource Estimation for Quantum Variational Simulations of the Hubbard Model

Zhenyu Cai

As the advances in quantum hardware bring us into the noisy intermediate-scale quantum (NISQ) era, one possible task we can perform without quantum error correction using NISQ mach…