The understanding of spin dynamics and relaxation mechanisms in clean graphene, and the upper time and length scales on which spin devices can operate, are prerequisites to realizing graphene-based spintronic technologies. Here we theoretically reveal the nature of fundamental spin relaxation mechanisms in clean graphene on different substrates with Rashba spin-orbit fields as low as a few tens of μeV. Spin lifetimes ranging from 50 picoseconds up to several nanoseconds are found to be dictated by substrate-induced electron-hole characteristics. A crossover in the spin relaxation mechanism from a Dyakonov-Perel type for SiO₂ substrates to a broadening-induced dephasing for hBN substrates is described. The energy dependence of spin lifetimes...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
The prospect of transporting spin information over long distances in graphene, possible because of i...
This article presents the current puzzling controversy between theory and experimental results conce...
The understanding of spin dynamics and relaxation mechanisms in clean graphene, and the upper time a...
Resumen del trabajo presentado a la 6th edition of Graphene Conference series, the largest European ...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
We theoretically investigate spin dynamics in spin-orbit-coupled materials. In the ballistic limit, ...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
Resumen del trabajo presentado al E-MRS Spring Meeting: Symposium Z: Two-dimensional crystals and va...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
The prospect of transporting spin information over long distances in graphene, possible because of i...
This article presents the current puzzling controversy between theory and experimental results conce...
The understanding of spin dynamics and relaxation mechanisms in clean graphene, and the upper time a...
Resumen del trabajo presentado a la 6th edition of Graphene Conference series, the largest European ...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
We theoretically investigate spin dynamics in spin-orbit-coupled materials. In the ballistic limit, ...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
Resumen del trabajo presentado al E-MRS Spring Meeting: Symposium Z: Two-dimensional crystals and va...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
We perform extensive first-principles calculations for heterostructures composed of monolayer graphe...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
The prospect of transporting spin information over long distances in graphene, possible because of i...
This article presents the current puzzling controversy between theory and experimental results conce...