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Optimal-order Trotter-Suzuki decomposition for quantum simulation on noisy quantum computers

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arxiv 2405.01131 v3 pith:QYZ2FXVO submitted 2024-05-02 quant-ph

classification quant-ph
keywords errorquantumtrotterizationdecompositiongatemodelnoisysimulation
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The potential of employing higher orders of the Trotter-Suzuki decomposition of the evolution operator for more effective simulations of quantum systems on a noisy quantum computer is explored. By examining the transverse-field Ising model and the XY model, it is demonstrated that when the gate error is decreased by approximately an order of magnitude relative to typical modern values, higher-order Trotterization becomes advantageous. This form of Trotterization yields a global minimum of the overall simulation error, comprising both the mathematical error of Trotterization and the physical error arising from gate execution.

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Cited by 1 Pith paper

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  1. False Positives Raised by Quantum Readout Error Mitigation

    quant-ph 2025-10 conditional novelty 5.0 of 10

    Readout-error-mitigation matrices calibrated with imperfect state initialization systematically amplify initialization errors, causing exponentially growing fidelity overestimates for large entangled states.

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