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Non-Hermitian Hartman effect

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arxiv 2207.08715 v1 pith:V6ENLZMM submitted 2022-07-18 quant-ph cond-mat.str-elphysics.optics

Non-Hermitian Hartman effect

classification quant-ph cond-mat.str-elphysics.optics
keywords effectbarriernon-hermitianhartmanratherwhenbarriersbecomes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The Hartman effect refers to the rather paradoxical result that the time spent by a quantum mechanical particle or a photon to tunnel through an opaque potential barrier becomes independent of barrier width for long barriers. Such an effect, which has been observed in different physical settings, raised a lively debate and some controversies, owing to the correct definition and interpretation of tunneling times and the apparent superluminal transmission. A rather open question is whether (and under which conditions) the Hartman effect persists for inelastic scattering, i.e. when the potential becomes non-Hermitian and the scattering matrix is not unitary. Here we consider tunneling through a heterojunction barrier in the tight-binding picture, where the barrier consists of a generally non-Hermitian finite-sized lattice attached to two semi-infinite nearest-neighbor Hermitian lattice leads. We derive a simple and general condition for the persistence of the Hartman effect in non-Hermitian barriers, showing that it can be found rather generally when non-Hermiticity arises from non-reciprocal couplings, i.e. when the barrier displays the non-Hermitian skin effect, without any special symmetry in the system.

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Cited by 1 Pith paper

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  1. Tunneling time in coupled-channel systems

    cond-mat.other 2024-07 unverdicted novelty 3.0

    Presents a coupled-channel formalism for tunneling time in quasi-one-dimensional multiple-channel quantum systems.