Negative dynamic conductance of a quantum wire with unscreened Coulomb interaction

Fuente: arXiv
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Main Authors: Shchamkhalova, Bagun S., Sablikov, Vladimir A.
Format: Preprint
Published: 2025
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author Shchamkhalova, Bagun S.
Sablikov, Vladimir A.
author_facet Shchamkhalova, Bagun S.
Sablikov, Vladimir A.
contents Dynamic conductance and time-of-flight current instability in a quantum wire connected to electron reservoirs under DC bias voltage are studied in the absence of a gate screening the Coulomb interaction of electrons. Due to a strong electron-electron interaction, dramatic rearrangements of the charge density distribution and the potential landscape in the wire occur at a sufficiently high DC bias voltage. The applied voltage is screened mainly near the cathode contact, and an almost flat potential profile is established in the most of the wire. Thus, the size of the region of a population inversion of electronic states greatly increases, and the band of wave vectors that form unstable modes of electronic waves significantly reduces. As a result, the conditions for the occurrence of the time-of-flight instability are greatly facilitated and the negative dynamic conductivity increases.
format Preprint
id arxiv_https___arxiv_org_abs_2511_00683
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Negative dynamic conductance of a quantum wire with unscreened Coulomb interaction
Shchamkhalova, Bagun S.
Sablikov, Vladimir A.
Mesoscale and Nanoscale Physics
Dynamic conductance and time-of-flight current instability in a quantum wire connected to electron reservoirs under DC bias voltage are studied in the absence of a gate screening the Coulomb interaction of electrons. Due to a strong electron-electron interaction, dramatic rearrangements of the charge density distribution and the potential landscape in the wire occur at a sufficiently high DC bias voltage. The applied voltage is screened mainly near the cathode contact, and an almost flat potential profile is established in the most of the wire. Thus, the size of the region of a population inversion of electronic states greatly increases, and the band of wave vectors that form unstable modes of electronic waves significantly reduces. As a result, the conditions for the occurrence of the time-of-flight instability are greatly facilitated and the negative dynamic conductivity increases.
title Negative dynamic conductance of a quantum wire with unscreened Coulomb interaction
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2511.00683