Spin Relaxation and Manipulation in Spin-orbit Qubits
ORAL
Abstract
We derive a generalized form of the Electric Dipole Spin Resonance (EDSR) Hamiltonian in the presence of the spin-orbit interaction for single spins in an elliptic quantum dot (QD) subject to an arbitrary (in both direction and magnitude) applied magnetic field. We predict a nonlinear behavior of the Rabi frequency as a function of the magnetic field for sufficiently large Zeeman energies, and present a microscopic expression for the anisotropic electron g-tensor. Similarly, an EDSR Hamiltonian is devised for two spins confined in a double quantum dot (DQD). Finally, we calculate two-electron-spin relaxation rates due to phonon emission, for both in-plane and perpendicular magnetic fields. Our results have immediate applications to current EDSR experiments on nanowire QDs, g-factor optimization of confined carriers, and spin decay measurements in DQD spin-orbit qubits.
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Authors
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Massoud Borhani
Laboratory for Physical Sciences
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Xuedong Hu
Department of Physics, University at Buffalo, SUNY, University at Buffalo, The State University of New York, Department of Physics, University at Buffalo, State University of New York, Department of Physics, University at Buffalo, The State University of New York, University at Buffalo, SUNY, SUNY at Buffalo