Hanle lineshapes and spin-rotation signatures from in-plane anisotropic spin relaxation in heterogeneous spin devices

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Světlík, Josef, Sierra, Juan F., Camosi, Lorenzo, Torres, Williams Savero, Herling, Franz, Marinova, Vera, Dimitrov, Dimitre, Valenzuela, Sergio O.
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911484749021184
author Světlík, Josef
Sierra, Juan F.
Camosi, Lorenzo
Torres, Williams Savero
Herling, Franz
Marinova, Vera
Dimitrov, Dimitre
Valenzuela, Sergio O.
author_facet Světlík, Josef
Sierra, Juan F.
Camosi, Lorenzo
Torres, Williams Savero
Herling, Franz
Marinova, Vera
Dimitrov, Dimitre
Valenzuela, Sergio O.
contents Spin precession experiments in lateral spin devices are a powerful tool for probing the spin transport properties of materials. These experiments can be quantitatively described using the Bloch diffusion equation, which offers a practical framework for modeling spin-related phenomena. In this work, we present calculations of the spin density across heterogeneous, diffusive spintronic devices. The modeled devices feature spin transport channels that include both isotropic and in-plane anisotropic spin relaxation regions. We analyze how different geometric configurations and spin transport parameters influence the lineshape of spin precession signals under magnetic fields applied in different orientations and compare with experimental observations. Our results introduce a theoretical framework for interpreting spin transport measurements in lateral graphene spin devices. The framework is especially relevant when the graphene is partially proximitized by other two-dimensional materials, where proximity-induced spin-orbit coupling leads to anisotropic spin relaxation.
format Preprint
id arxiv_https___arxiv_org_abs_2603_04297
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Hanle lineshapes and spin-rotation signatures from in-plane anisotropic spin relaxation in heterogeneous spin devices
Světlík, Josef
Sierra, Juan F.
Camosi, Lorenzo
Torres, Williams Savero
Herling, Franz
Marinova, Vera
Dimitrov, Dimitre
Valenzuela, Sergio O.
Mesoscale and Nanoscale Physics
Spin precession experiments in lateral spin devices are a powerful tool for probing the spin transport properties of materials. These experiments can be quantitatively described using the Bloch diffusion equation, which offers a practical framework for modeling spin-related phenomena. In this work, we present calculations of the spin density across heterogeneous, diffusive spintronic devices. The modeled devices feature spin transport channels that include both isotropic and in-plane anisotropic spin relaxation regions. We analyze how different geometric configurations and spin transport parameters influence the lineshape of spin precession signals under magnetic fields applied in different orientations and compare with experimental observations. Our results introduce a theoretical framework for interpreting spin transport measurements in lateral graphene spin devices. The framework is especially relevant when the graphene is partially proximitized by other two-dimensional materials, where proximity-induced spin-orbit coupling leads to anisotropic spin relaxation.
title Hanle lineshapes and spin-rotation signatures from in-plane anisotropic spin relaxation in heterogeneous spin devices
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2603.04297