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20232026
most citedADAPT-QSCI: Adaptive Construction of an Input State for Quantum-Selected Configuration Interaction

36 citations · 55 across the 13 of their papers we have counts for

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quant-ph2026

Doubling the size of quantum selected configuration interaction based on seniority-zero space and its application to QC-QSCI-AFQMC

Yuichiro Yoshida, Takuma Murokoshi, Rika Nakagawa +6

We propose doubly occupied configuration interaction-quantum selected configuration interaction (DOCI-QSCI), which samples from the seniority-zero space. While the use of this spac…

quant-ph2026

Symmetry-Adapted State Preparation for Quantum Chemistry on Fault-Tolerant Quantum Computers

Viktor Khinevich, Wataru Mizukami

We present systematic and resource-efficient constructions of continuous symmetry projectors, particularly particle number and total spin, tailored for fault-toleran…

quant-ph2025★ 2 cited

Auxiliary-field quantum Monte Carlo method with quantum selected configuration interaction

Yuichiro Yoshida, Luca Erhart, Takuma Murokoshi +5

We propose using the wave function generated by the quantum selected configuration interaction (QSCI) method as the trial wave function in phaseless auxiliary-field quantum Monte C…

quant-ph2025

Enhancing quantum computations with the synergy of auxiliary field quantum Monte Carlo and computational basis tomography

Viktor Khinevich, Wataru Mizukami

We introduce QC-CBT-AFQMC, a hybrid algorithm that incorporates computational basis tomography (CBT) into the quantum-classical auxiliary-field quantum Monte Carlo (QC-AFQMC) metho…

quant-ph2024

Lazy Qubit Reordering for Accelerating Parallel State-Vector-based Quantum Circuit Simulation

Yusuke Teranishi, Shoma Hiraoka, Wataru Mizukami +2

This paper proposes two quantum operation scheduling methods for accelerating parallel state-vector-based quantum circuit simulation using multiple graphics processing units (GPUs)…

quant-ph2024

Chebyshev Approximated Variational Coupled Cluster for Quantum Computing

Luca Erhart, Yuichiro Yoshida, Viktor Khinevich +1

We propose an approach to approximately implement the variational coupled cluster (VCC) theory on quantum computers, which struggles with exponential scaling of computational costs…