Emergence of tunable exceptional points in altermagnet-ferromagnet junctions
arXiv:2408.04459 · doi:10.1103/PhysRevB.110.235401
Abstract
The existence of exceptional points (EPs) where both eigenvalues and eigenvectors converge is a key characteristic of non-Hermitian physics. A newly-discovered class of magnets termed as altermagnets (AMs) are characterized by a net zero magnetization as well as spin-split bands. In this study, we propose the emergence of non-Hermitian physics at AM-ferromagnet (FM) junctions. We discover that such a junction hosts tunable EPs. We demonstrate that the positions of these emergent EPs can be tuned using an external applied magnetic field and show that for a critical value of the applied magnetic field the EPs can annihilate. Notably, the number and position of the EPs crucially depends on the type of AM and its orientation with respect to the FM. Our work puts forth a promising platform of exploration of non-Hermitian physics in an emerging class of magnetic materials.
7 pages, 6 figures
References in corpus (33)
- Making Sense of Non-Hermitian Hamiltonians
- Exceptional Topology of Non-Hermitian Systems
- Non-Hermitian Physics
- The physics of exceptional points
- Symmetry and Topology in Non-Hermitian Physics
- Topological Band Theory for Non-Hermitian Hamiltonians
- Altermagnetism: spin-momentum locked phase protected by non-relativistic symmetries
- Crystal Hall effect in Collinear Antiferromagnets
- Giant momentum-dependent spin splitting in centrosymmetric low Z antiferromagnets
- Non-Hermitian Topology and Exceptional-Point Geometries
- The emergence, coalescence and topological properties of multiple exceptional points and their experimental realization
- Encircling an Exceptional Point
- Observation of plaid-like spin splitting in a noncoplanar antiferromagnet
- Simultaneous Observation of Topological Edge State and Exceptional Point in an Open and Non-Hermitian System
- dc Josephson Effect in Altermagnets
- Symmetry and Higher-Order Exceptional Points
- Finite-momentum Cooper pairing in proximitized altermagnets
- Observation of Exceptional Points in Electronic Circuits
- Andreev reflection at the altermagnet-superconductor interface
- Phase-shifted Andreev levels in an altermagnet Josephson junction
- Altermagnetic superconducting diode effect
- Non-Hermitian Weyl Physics in Topological Insulator Ferromagnet Junctions
- Non-Hermitian Topological Phases: Principles and Prospects
- Superconductor-altermagnet memory functionality without stray fields
- Field-free Josephson diode effect in altermagnet/normal metal/altermagnet junctions
- Direct Measurement of Topological Properties of an Exceptional Parabola
- Phase rigidity and avoided level crossings in the complex energy plane
- Exceptional odd-frequency pairing in non-Hermitian superconducting systems
- Transport across junctions of altermagnets with normal metals and ferromagnets
- Crossed Andreev reflection in altermagnets
- Interplay of altermagnetism and pressure in hexagonal and orthorhombic MnTe
- Thermoelectric Effect in Altermagnet-Superconductor Junctions
- A Tropical Geometric Approach To Exceptional Points
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