Electron spin relaxation by nuclei in semiconductor quantum dots
Ioffe Institute · United States Naval Research Laboratory
Abstract
We have studied theoretically electron spin relaxation in semiconductor quantum dots via interaction with nuclear spins. The relaxation is shown to be determined by three processes: (i) the precession of the electron spin in the hyperfine field of the frozen fluctuation of the nuclear spins; (ii) the precession of the nuclear spins in the hyperfine field of the electron; and (iii) the precession of the nuclear spin in the dipole field of its nuclear neighbors. In external magnetic fields the relaxation of electron spins directed along the magnetic field is suppressed. Electron spins directed transverse to the magnetic field relax completely in a time on the order of the precession period of its spin in the…
Citation impact
- FWCI
- 23.26
- Percentile
- 100%
- References
- 25
Authors
3Topics & keywords
- Hyperfine structure
- Spins
- Condensed matter physics
- Physics
- Larmor precession
- Precession
- Spin (aerodynamics)
- Electron