P-shell carriers assisted dynamic nuclear spin polarization in single quantum dots at zero external magnetic field
arXiv:1601.03480 · doi:10.1103/PhysRevB.93.125306
Abstract
Repeated injection of spin polarized carriers in a quantum dot leads to the polarization of nuclear spins, a process known as dynamic nuclear spin polarization (DNP). Here, we report the first observation of p-shell carrier assisted DNP in single QDs at zero external magnetic field. The nuclear field - measured by using the Overhauser shift of the singly charged exciton state of the QDs - continues to increase, even after the carrier population in the s-shell saturates. This is also accompanied by an abrupt increase in nuclear spin buildup time as p-shell emission overtakes that of the s-shell. We attribute the observation to p-shell electrons strongly altering the nuclear spin dynamics in the QD, supported by numerical simulation results based on a rate equation model of coupling between electron and nuclear spin system. DNP with p-shell carriers could open up avenues for further control to increase the degree of nuclear spin polarization in QDs.
23 pages, 6 figures
References in corpus (9)
- Dynamics of Quantum Dot Nuclear Spin Polarization Controlled by a Single Electron
- Bistability of the Nuclear Polarisation created through optical pumping in InGaAs Quantum Dots
- Nonlinear dynamics of quantum dot nuclear spins
- Dynamic nuclear spin polarization in resonant laser spectroscopy of a quantum dot
- Stabilizing effect of nuclear quadrupole interaction on the polarization of electron-nuclear spin system in a quantum dot
- Optically monitored nuclear spin dynamics in individual GaAs quantum dots grown by droplet epitaxy
- Hysteretic response of electron-nuclear spin system in single InAlAs quantum dots:Excitation power and polarization dependences
- Hyperfine interaction in InAs/GaAs self-assembled quantum dots : dynamical nuclear polarization versus spin relaxation
- Alignment of nuclear spins in single quantum dots using unpolarized light