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Keldysh-Lattice Boltzmann approach to quantum nanofluidics

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arxiv 2403.15768 v1 pith:FBUVCYRL submitted 2024-03-23 physics.comp-ph

classification physics.comp-ph
keywords boltzmanncomputationalquantumapproachcoupledesigndevicesequilibrium
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We present a mathematical and computational framework to couple the Keldysh non equilibrium quantum transport formalism with a nanoscale lattice Boltzmann method for the computational design of quantum-engineered nanofluidic devices.

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  1. From non-equilibrium Green's functions to Lattice Wigner: A toy model for quantum nanofluidics simulations

    cond-mat.mes-hall 2025-01 conditional novelty 4.0 of 10

    A lattice Boltzmann-Wigner model with third-order quantum forcing shows that quantum effects in a 1D nanofluid mainly alter odd kinetic moments when the Fermi wavelength is comparable to the potential scale.

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