We investigate the spin relaxation and decoherence in a single-electron graphene quantum dot with Rashba and intrinsic spin-orbit interactions.We derive an effective spin-phonon Hamiltonian via the Schrieffer-Wolff transformation in order to calculate the spin relaxation time T1 and decoherence time T2 within the framework of theBloch- Redfield theory. In this model, the emergence of a nonmonotonic dependence of T1 on the external magnetic field is attributed to the Rashba spin-orbit coupling-induced anticrossing of opposite spin states. A rapid decrease of T1 occurs when the spin and orbital relaxation rates become comparable in the vicinity of the spin-mixing energylevel anticrossing. By contrast, the intrinsic spin-orbit interaction lead...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Resumen del trabajo presentado a la 6th edition of Graphene Conference series, the largest European ...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We theoretically investigate spin dynamics in spin-orbit-coupled materials. In the ballistic limit, ...
We investigate phonon-induced spin and charge relaxation mediated by spin-orbit and hyperfine intera...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
The understanding of spin dynamics and relaxation mechanisms in clean graphene, and the upper time a...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Resumen del trabajo presentado a la 6th edition of Graphene Conference series, the largest European ...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We estimate the spin relaxation rate due to spin-orbit coupling and acoustic phonon scattering in we...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We theoretically investigate spin dynamics in spin-orbit-coupled materials. In the ballistic limit, ...
We investigate phonon-induced spin and charge relaxation mediated by spin-orbit and hyperfine intera...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
The understanding of spin dynamics and relaxation mechanisms in clean graphene, and the upper time a...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Understanding and control of the spin relaxation time T-1 is among the key challenges for spinbased ...
Phonon-induced spin relaxation in coupled lateral quantum dots in the presence of spin-orbit couplin...
Resumen del trabajo presentado a la 6th edition of Graphene Conference series, the largest European ...
Phonon-induced orbital and spin relaxation rates of single electron states in lateral single and dou...