Apparent fractional charge signatures in PbTe quantum dots due to capacitively coupled charge trap dynamics

We report the observation of fractional shifts in the experimental stability diagrams of PbTe nanowire quantum dots. Although this behavior may appear to suggest fractional charge transport, akin to that reported in the fractional quantum Hall regime, the quasi-one-dimensionality of the system and absence of an applied magnetic field indicate that the presence of fractional charges is highly unlikely. We instead attribute these effects to the presence of one or more spurious dots, or charge traps, capacitively coupled to the primary dot. Our findings illustrate how signatures of fractional charge transport may be replicated through trivial mesoscopic Coulombic effects.

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Publication Details

Journal
Low Temperature Physics
Published
2026-09-01
DOI
https://doi.org/10.1063/10.0044809
Citations
1
Primary Topic
Quantum and electron transport phenomena
Type
article
Field-Weighted Citation Impact
4.47

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article

Apparent fractional charge signatures in PbTe quantum dots due to capacitively coupled charge trap dynamics

Seth Byard, Maksim Gomanko, Sergey Frolov
1 citations
Low Temperature Physics
Quantum and electron transport phenomena
4.47
article

Apparent fractional charge signatures in PbTe quantum dots due to capacitively coupled charge trap dynamics

Seth Byard, Maksim Gomanko, Sergey Frolov
article en
1 citations

Abstract

We report the observation of fractional shifts in the experimental stability diagrams of PbTe nanowire quantum dots. Although this behavior may appear to suggest fractional charge transport, akin to that reported in the fractional quantum Hall regime, the quasi-one-dimensionality of the system and absence of an applied magnetic field indicate that the presence of fractional charges is highly unlikely. We instead attribute these effects to the presence of one or more spurious dots, or charge traps, capacitively coupled to the primary dot. Our findings illustrate how signatures of fractional charge transport may be replicated through trivial mesoscopic Coulombic effects.

Low Temperature PhysicsVol. 52(9)
University of Pittsburgh (US)
U.S. Department of Energy, Technische Universiteit Eindhoven, Basic Energy Sciences
Openalex Percentile: Top 11%
Quantum and electron transport phenomena
4.47
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Apparent fractional charge signatures in PbTe quantum dots due to capacitively coupled charge trap dynamics — Seth Byard, Maksim Gomanko, et al. · Low Temperature Physics (2026) | TGRS Research Map | TGRS