Le Gall C, Besombes L, Boukari H, Kolodka R, Cibert J, Mariette H
Université Joseph Fourier, 38042 Grenoble, France.
Phys Rev Lett. 2009 Mar 27;102(12):127402. doi: 10.1103/PhysRevLett.102.127402. Epub 2009 Mar 24.
An optical spin orientation is achieved for a Mn atom localized in a semiconductor quantum dot using quasiresonant excitation at zero magnetic field. Optically created spin-polarized carriers generate an energy splitting of the Mn spin and enable magnetic moment orientation controlled by the photon helicity and energy. The dynamics and the magnetic field dependence of the optical pumping mechanism show that the spin lifetime of an isolated Mn atom at zero magnetic field is controlled by a magnetic anisotropy induced by the built-in strain in the quantum dots.
在零磁场下,通过准共振激发实现了半导体量子点中局域化锰原子的光学自旋取向。光学产生的自旋极化载流子产生锰自旋的能量分裂,并使磁矩取向受光子螺旋度和能量控制。光泵浦机制的动力学和磁场依赖性表明,零磁场下孤立锰原子的自旋寿命由量子点中内禀应变引起的磁各向异性控制。