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Operator-Projected Variational Quantum Imaginary Time Evolution

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arxiv 2409.12018 v1 pith:RFVVK62Q submitted 2024-09-18 quant-ph cond-mat.other

classification quant-phcond-mat.other
keywords quantumevolutionimaginarynumbertimevariationalvqiteaccuracy
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Variational Quantum Imaginary Time Evolution (VQITE) is a leading technique for ground state preparation on quantum computers. A significant computational challenge of VQITE is the determination of the quantum geometric tensor. We show that requiring the imaginary-time evolution to be correct only when projected onto a chosen set of operators allows to achieve a twofold reduction in circuit depth by bypassing fidelity estimations, and reduces measurement complexity from quadratic to linear in the number of parameters. We demonstrate by a simulation of the transverse-field Ising model that our algorithm achieves a several orders of magnitude improvement in the number of measurements required for the same accuracy.

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Cited by 1 Pith paper

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  1. Quantum Assisted Ghost Gutzwiller Ansatz

    quant-ph 2025-06 conditional novelty 5.0 of 10

    A quantum-assisted ghost Gutzwiller ansatz, using QSCI with LUCJ states and circuit cutting on 24-qubit IQM hardware, captures the Mott transition in the Bethe lattice Hubbard model with only about 1% of the CI basis states.

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