Nonlinear transport in narrow band-gap materials has recently attracted significant attention, being commonly
recognized as a useful tool to study a variety of complex physical effects related to Berry phase. Here we
demonstrate that a mundane, commonly overlooked mechanism stemming from tunneling between charge
puddles, can drive substantial nonlinearities in these narrow band gap materials. As a test bed, we use an
epitaxial topological HgTe layer, underscoring that even good crystalline quality materials suffer from this issue.
Indeed, we show that signatures of electrical transport through a network of charge puddles are not limited
to the linear planar magnetoresistance, but also dominate nonlinear transport. Our findings highlight the need
for utmost caution when interpreting nonlinear electrical transport phenomena, as harmonic distortion of the
electrical signal, caused by charge puddles, is unavoidable in any realistic narrow-gap system, complicating the
identification of other proposed effects related to the Berry phase.
%0 Journal Article
%1 Thenapparambil_2026
%A Thenapparambil, Arya
%A Fijalkowski, Kajetan M.
%A AbdelGhany, Mohamed
%A Buhmann, Hartmut
%A Gould, Charles
%A Molenkamp, Laurens W.
%D 2026
%I American Physical Society (APS)
%J Physical Review B
%K myown qt
%N 12
%R 10.1103/mc1p-blhk
%T Charge puddles complicate nonlinear transport in large Berry phase materials
%V 113
%X Nonlinear transport in narrow band-gap materials has recently attracted significant attention, being commonly
recognized as a useful tool to study a variety of complex physical effects related to Berry phase. Here we
demonstrate that a mundane, commonly overlooked mechanism stemming from tunneling between charge
puddles, can drive substantial nonlinearities in these narrow band gap materials. As a test bed, we use an
epitaxial topological HgTe layer, underscoring that even good crystalline quality materials suffer from this issue.
Indeed, we show that signatures of electrical transport through a network of charge puddles are not limited
to the linear planar magnetoresistance, but also dominate nonlinear transport. Our findings highlight the need
for utmost caution when interpreting nonlinear electrical transport phenomena, as harmonic distortion of the
electrical signal, caused by charge puddles, is unavoidable in any realistic narrow-gap system, complicating the
identification of other proposed effects related to the Berry phase.
@article{Thenapparambil_2026,
abstract = {Nonlinear transport in narrow band-gap materials has recently attracted significant attention, being commonly
recognized as a useful tool to study a variety of complex physical effects related to Berry phase. Here we
demonstrate that a mundane, commonly overlooked mechanism stemming from tunneling between charge
puddles, can drive substantial nonlinearities in these narrow band gap materials. As a test bed, we use an
epitaxial topological HgTe layer, underscoring that even good crystalline quality materials suffer from this issue.
Indeed, we show that signatures of electrical transport through a network of charge puddles are not limited
to the linear planar magnetoresistance, but also dominate nonlinear transport. Our findings highlight the need
for utmost caution when interpreting nonlinear electrical transport phenomena, as harmonic distortion of the
electrical signal, caused by charge puddles, is unavoidable in any realistic narrow-gap system, complicating the
identification of other proposed effects related to the Berry phase.},
added-at = {2026-07-08T12:14:35.000+0200},
author = {Thenapparambil, Arya and Fijalkowski, Kajetan M. and AbdelGhany, Mohamed and Buhmann, Hartmut and Gould, Charles and Molenkamp, Laurens W.},
biburl = {https://www.bibsonomy.org/bibtex/2f4698d55ade0e01792f59bcb4812d46f/ep3qt},
doi = {10.1103/mc1p-blhk},
interhash = {813325675424298a030d946f76addcf1},
intrahash = {f4698d55ade0e01792f59bcb4812d46f},
issn = {2469-9969},
journal = {Physical Review B},
keywords = {myown qt},
month = {03},
number = 12,
publisher = {American Physical Society (APS)},
timestamp = {2026-07-08T12:14:35.000+0200},
title = {Charge puddles complicate nonlinear transport in large Berry phase materials},
volume = 113,
year = 2026
}