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Anomalous Nonlinear Magnetoconductivity in van der Waals Magnet CrSBr

  • Junhyeon Jo*
  • , Manuel Suárez-Rodríguez
  • , Samuel Mañas-Valero
  • , Eugenio Coronado
  • , Ivo Souza
  • , Fernando de Juan
  • , Fèlix Casanova
  • , Marco Gobbi*
  • , Luis E. Hueso*
  • *Corresponding author for this work
  • CIC nanoGUNE
  • University of Valencia
  • Centro de Física de Materiales (CFM-MPC) Centro Mixto CSIC-UPV/EHU
  • Ikerbasque Basque Foundation for Science
  • Donostia International Physics Center

Research output: Contribution to journalJournal articlepeer-review

Abstract

Nonlinear magnetoconductivity (NLMC) is a nonreciprocal transport response arising in non-centrosymmetric materials. However, this ordinary NLMC signal vanishes at zero magnetic field, limiting its potential for applications. Here, the observation of an anomalous NLMC controlled by internal order parameters such as the magnetization or Néel vectors is reported. This response is achieved by breaking both inversion and time-reversal symmetry in artificial van der Waals heterostructures based on the magnetic CrSBr and insulating hBN. The nonreciprocal signal can be tuned between two different states in ferromagnetic monolayer CrSBr and among four different states in antiferromagnetic bilayer CrSBr, thanks to its metamagnetic transition. Remarkably, this output signal in the ferromagnetic (antiferromagnetic) state of CrSBr is three (one) orders of magnitude higher than those previously measured. A conductivity scaling analysis reveals the Berry connection polarizability as the origin of the anomalous NLMC. The results pave the way for high-frequency rectifiers with magnetically switchable output polarity as well as for an efficient electrical readout of the magnetic state of antiferromagnetic materials.

Original languageEnglish
Article number2419283
JournalAdvanced Materials
Volume37
Issue number16
DOIs
StatePublished - 2025.04.23

Keywords

  • CrSBr
  • anomalous nonlinear magnetoconductivity
  • hBN
  • van der Waals magnet

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