Simulating the vibrational quantum dynamics of molecules using photonics

NATURE(2018)

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摘要
Advances in control techniques for vibrational quantum states in molecules present new challenges for modelling such systems, which could be amenable to quantum simulation methods. Here, by exploiting a natural mapping between vibrations in molecules and photons in waveguides, we demonstrate a reprogrammable photonic chip as a versatile simulation platform for a range of quantum dynamic behaviour in different molecules. We begin by simulating the time evolution of vibrational excitations in the harmonic approximation for several four-atom molecules, including H 2 CS, SO 3 , HNCO, HFHF, N 4 and P 4 . We then simulate coherent and dephased energy transport in the simplest model of the peptide bond in proteins— N -methylacetamide—and simulate thermal relaxation and the effect of anharmonicities in H 2 O. Finally, we use multi-photon statistics with a feedback control algorithm to iteratively identify quantum states that increase a particular dissociation pathway of NH 3 . These methods point to powerful new simulation tools for molecular quantum dynamics and the field of femtochemistry.
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关键词
Optics and photonics,Physical chemistry,Quantum simulation,Single photons and quantum effects,Science,Humanities and Social Sciences,multidisciplinary
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