Orbitronics: Orbital Currents in Solids
arXiv:2107.08478 · doi:10.1209/0295-5075/ac2653
Abstract
In solids, electronic Bloch states are formed by atomic orbitals. While it is natural to expect that orbital composition and information about Bloch states can be manipulated and transported, in analogy to the spin degree of freedom extensively studied in past decades, it has been assumed that orbital quenching by the crystal field prevents significant dynamics of orbital degrees of freedom. However, recent studies reveal that an orbital current, given by the flow of electrons with a finite orbital angular momentum, can be electrically generated and transported in wide classes of materials despite the effect of orbital quenching in the ground state. Orbital currents also play a fundamental role in the mechanisms of other transport phenomena such as spin Hall effect and valley Hall effect. Most importantly, it has been proposed that orbital currents can be used to induce magnetization dynamics, which is one of the most pivotal and explored aspects of magnetism. Here, we give an overview of recent progress and the current status of research on orbital currents. We review proposed physical mechanisms for generating orbital currents and discuss candidate materials where orbital currents are manifest. We review recent experiments on orbital current generation and transport and discuss various experimental methods to quantify this elusive object at the heart of an area which exploits the orbital degree of freedom as an information carrier in solid-state devices.
Invited article from EPL Perspective
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Cited by in corpus (10)
- Giant orbital Hall effect and orbital-to-spin conversion in 3d, 5d, and 4f metallic heterostructures
- Orbital Hanle Magnetoresistance in a 3d Transition Metal
- Orbital Hall effect in bilayer transition metal dichalcogenides: From the intra-atomic approximation to the Bloch states orbital magnetic moment approach
- Direct visualization of Rashba-split bands and spin/orbital-charge interconversion at KTaO interfaces
- Antiferromagnetic insulatronics: spintronics in insulating 3d metal oxides with antiferromagnetic coupling
- Orbital design of Berry curvature: pinch points and giant dipoles induced by crystal fields
- Tunable spin and orbital Edelstein effect at (111) LaAlO/SrTiO interface
- Symmetry constraints on the orbital transport in solids
- Effects of Boundary on Orbital Magnetization for a Bilayer System with Different Chern Numbers
- Orbital Dynamics in Centrosymmetric Systems