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Towards Quantum Simulation of Non-Markovian Open Quantum Dynamics: A Universal and Compact Theory

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arxiv 2401.17255 v4 pith:QTMZ5YVZ submitted 2024-01-30 quant-ph cond-mat.str-elphysics.chem-ph

classification quant-phcond-mat.str-elphysics.chem-ph
keywords quantumnon-markovianopentheoryuniversalcompactcomplexcomputing
verification ladder T0 review T1 audit T2 compute T3 formal
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Non-Markovianity, the intricate dependence of an open quantum system on its temporal evolution history, holds tremendous implications across various scientific disciplines. However, accurately characterizing the complex non-Markovian effects has posed a formidable challenge for numerical simulations. While quantum computing technologies show promise, a universal theory enabling practical quantum algorithm implementation has been elusive. We address this gap by introducing the dissipaton-embedded quantum master equation in second quantization (DQME-SQ). This exact and compact theory offers two key advantages: representability by quantum circuits and universal applicability to any Gaussian environment. We demonstrate these capabilities through digital quantum simulations of non-Markovian dissipative dynamics in both bosonic and fermionic environments. The DQME-SQ framework opens a new horizon for the efficient exploration of complex open quantum systems by leveraging the rapidly advancing quantum computing technologies.

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  1. A purified input-output pseudomode model for structured open quantum systems

    quant-ph 2024-12 conditional novelty 6.0 of 10

    A purified pseudomode model, built by analytically continuing pseudomode parameters to a limit that keeps ancilla states pure, reproduces system dynamics and bath input-output observables for non-Markovian open quantu...

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