Photogalvanic effect in hydrodynamic flows of nonreciprocal electron liquids

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Kirkinis, E., Bonds, L., Levchenko, A., Andreev, A. V.
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866917012749418496
author Kirkinis, E.
Bonds, L.
Levchenko, A.
Andreev, A. V.
author_facet Kirkinis, E.
Bonds, L.
Levchenko, A.
Andreev, A. V.
contents We study nonlinear hydrodynamic electron transport driven by an AC electric field. In noncentrosymmetric conductors with broken time-reversal (TR) symmetry the nonlinear flow of such liquids is nonreciprocal, giving rise to a DC current $I^{DC}$ that is quadratic in the amplitude of the AC electric field. This is the hydrodynamic analogue of the linear photogalvanic effect (PGE), which arises in bulk noncentrosymmetric materials with broken TR symmetry. The magnitude of $I^{DC}$ depends on both the properties of the electron fluid and the geometry of the flow, and may be characterized by two dimensionless parameters: the nonreciprocity number $\mathcal{N}$, and the frequency-dependent vibrational number $\mathcal{R}$. Due to nonlocality of hydrodynamic transport, at low frequencies of the AC drive, $I^{DC}$ is super-extensive. The AC component of the electric current is likewise strongly affected by nonreciprocity: the hysteretic current-voltage dependence becomes skewed, which can be interpreted in terms of nonreciprocity of the memory retention time.
format Preprint
id arxiv_https___arxiv_org_abs_2507_06933
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Photogalvanic effect in hydrodynamic flows of nonreciprocal electron liquids
Kirkinis, E.
Bonds, L.
Levchenko, A.
Andreev, A. V.
Mesoscale and Nanoscale Physics
We study nonlinear hydrodynamic electron transport driven by an AC electric field. In noncentrosymmetric conductors with broken time-reversal (TR) symmetry the nonlinear flow of such liquids is nonreciprocal, giving rise to a DC current $I^{DC}$ that is quadratic in the amplitude of the AC electric field. This is the hydrodynamic analogue of the linear photogalvanic effect (PGE), which arises in bulk noncentrosymmetric materials with broken TR symmetry. The magnitude of $I^{DC}$ depends on both the properties of the electron fluid and the geometry of the flow, and may be characterized by two dimensionless parameters: the nonreciprocity number $\mathcal{N}$, and the frequency-dependent vibrational number $\mathcal{R}$. Due to nonlocality of hydrodynamic transport, at low frequencies of the AC drive, $I^{DC}$ is super-extensive. The AC component of the electric current is likewise strongly affected by nonreciprocity: the hysteretic current-voltage dependence becomes skewed, which can be interpreted in terms of nonreciprocity of the memory retention time.
title Photogalvanic effect in hydrodynamic flows of nonreciprocal electron liquids
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2507.06933