AI Article Synopsis

  • The text discusses how graphene-based van der Waals heterostructures can manipulate spin-orbit coupling (SOC) through proximity effects, emphasizing the importance of understanding features near the Dirac point and the introduction of a unique "radial Rashba SOC."
  • It presents a method to differentiate between conventional Rashba SOC and radial Rashba SOC, utilizing large-scale magnetotransport calculations like transverse magnetic focusing and Dyakonov-Perel spin relaxation to reveal distinct experimental signatures.
  • Additionally, the study proposes a way to estimate the Rashba angle using magnetic field responses and explores the effects of Dresselhaus SOC, hinting at potential applications in radial superconducting diodes.

Article Abstract

Graphene-based van der Waals heterostructures take advantage of tailoring spin-orbit coupling (SOC) in the graphene layer by the proximity effect. At long wavelength-saddled by the electronic states near the Dirac points-the proximitized features can be effectively modeled by the Hamiltonian involving novel SOC terms and allow for an admixture of the tangential and radial spin-textures-by the so-called Rashba angle θ_{R}. Taking such effective models we perform realistic large-scale magnetotransport calculations-transverse magnetic focusing and Dyakonov-Perel spin relaxation-and show that there are unique qualitative and quantitative features allowing for an unbiased experimental disentanglement of the conventional Rashba SOC from its novel radial counterpart, called here the radial Rashba SOC. Along with that, we propose a scheme for a direct estimation of the Rashba angle by exploring the magneto response symmetries when swapping an in-plane magnetic field. To complete the story, we analyze the magnetotransport and spin-relaxation signatures in the presence of an emergent Dresselhaus SOC and also provide some generic ramifications about possible scenarios of the radial superconducting diode effect.

Download full-text PDF

Source
http://dx.doi.org/10.1103/PhysRevLett.133.216201DOI Listing

Publication Analysis

Top Keywords

magnetotransport spin-relaxation
8
spin-relaxation signatures
8
radial rashba
8
spin-orbit coupling
8
rashba angle
8
rashba soc
8
radial
5
rashba
5
soc
5
signatures radial
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!