Anomalous Knudsen effect signaling long-lived modes in 2D electron gases

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Main Authors: Starkov, Grigory A., Trauzettel, Björn
Format: Preprint
Published: 2025
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author Starkov, Grigory A.
Trauzettel, Björn
author_facet Starkov, Grigory A.
Trauzettel, Björn
contents Proper analysis of electron collisions in two spatial dimensions leads to the conclusion, that the odd harmonics of the electron distribution function decay much slower than the even ones at finite temperatures. The number of long-lived odd harmonics quickly shrinks with increasing temperature. Focusing on a channel geometry with boundary scattering, we show that such behavior of the odd decay rates leads to a characteristic behaviour of the conductance that we dub anomalous Knudsen effect: it initially grows with temperature but then starts to decrease, forming a peak. Further increase of the temperature forces the conductance to grow again due to the Gurzhi effect, associated with the crossover from ballistic to hydrodynamic transport. The simultaneous observation of the Gurzhi dip preceded by the anomalous Knudsen peak constitutes a particular signature of the long-lived modes in 2D electron transport at low temperatures.
format Preprint
id arxiv_https___arxiv_org_abs_2502_04880
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Anomalous Knudsen effect signaling long-lived modes in 2D electron gases
Starkov, Grigory A.
Trauzettel, Björn
Mesoscale and Nanoscale Physics
Quantum Gases
Strongly Correlated Electrons
Proper analysis of electron collisions in two spatial dimensions leads to the conclusion, that the odd harmonics of the electron distribution function decay much slower than the even ones at finite temperatures. The number of long-lived odd harmonics quickly shrinks with increasing temperature. Focusing on a channel geometry with boundary scattering, we show that such behavior of the odd decay rates leads to a characteristic behaviour of the conductance that we dub anomalous Knudsen effect: it initially grows with temperature but then starts to decrease, forming a peak. Further increase of the temperature forces the conductance to grow again due to the Gurzhi effect, associated with the crossover from ballistic to hydrodynamic transport. The simultaneous observation of the Gurzhi dip preceded by the anomalous Knudsen peak constitutes a particular signature of the long-lived modes in 2D electron transport at low temperatures.
title Anomalous Knudsen effect signaling long-lived modes in 2D electron gases
topic Mesoscale and Nanoscale Physics
Quantum Gases
Strongly Correlated Electrons
url https://arxiv.org/abs/2502.04880