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Single-device offset-free magnetic field sensing with tunable sensitivity and linear range based on spin-orbit torques

Autor(en)
Sabri Koraltan, Christin Schmitt, Florian Bruckner, Claas Abert, Klemens Prügl, Michael Kirsch, Rahul Gupta, Sebastian Zeilinger, Joshua M. Salazar-Mejía, Milan Agrawal, Johannes Güttinger, Armin Satz, Gerhard Jakob, Mathias Kläui, Dieter Suess
Abstrakt

We propose a novel device concept that uses spin-orbit torques to realize a magnetic field sensor, where we eliminate the sensor offset using a differential measurement concept. We derive a simple analytical formulation for the sensor signal and demonstrate its validity with numerical investigations using macrospin simulations. The sensitivity and the measurable linear sensing range in the proposed concept can be tuned by varying the effective magnetic anisotropy or the magnitude of the injected currents. We show that undesired perturbation fields normal to the sensitive direction preserve the zero-offset property and only slightly modulate the sensitivity of the proposed sensor. Higher harmonic voltage analysis on a Hall cross experimentally confirms the linearity and tunability via current strength. Additionally, the sensor exhibits a nonvanishing offset in the experiment, which we mostly attribute to the anomalous Nernst effect.

Organisation(en)
Forschungsplattform MMM Mathematics-Magnetism-Materials, Physik Funktioneller Materialien
Externe Organisation(en)
Johannes Gutenberg-Universität Mainz, Infineon, Infineon Technologies Austria AG
Journal
Physical Review Applied
Band
20
Anzahl der Seiten
15
ISSN
2331-7019
DOI
https://doi.org/10.1103/PhysRevApplied.20.044079
Publikationsdatum
10-2023
Peer-reviewed
Ja
ÖFOS 2012
103017 Magnetismus
ASJC Scopus Sachgebiete
Allgemeine Physik und Astronomie
Link zum Portal
https://ucrisportal.univie.ac.at/de/publications/70e58bd1-674e-4ccd-8e51-a89660e9c8dd