Hanson R, Mendoza F M, Epstein R J, Awschalom D D
Center for Spintronics and Quantum Computation, University of California, Santa Barbara, California 93106, USA.
Phys Rev Lett. 2006 Aug 25;97(8):087601. doi: 10.1103/PhysRevLett.97.087601. Epub 2006 Aug 23.
We study the coupling of a single nitrogen-vacancy center in diamond to a nearby single nitrogen defect at room temperature. The magnetic dipolar coupling leads to a splitting in the electron spin resonance frequency of the nitrogen-vacancy center, allowing readout of the state of a single nitrogen electron spin. At magnetic fields where the spin splitting of the two centers is the same, we observe a strong polarization of the nitrogen electron spin. The amount of polarization can be controlled by the optical excitation power. We combine the polarization and the readout in time-resolved pump-probe measurements to determine the spin relaxation time of a single nitrogen electron spin. Finally, we discuss indications for hyperfine-induced polarization of the nitrogen nuclear spin.
我们研究了室温下金刚石中单个氮空位中心与附近单个氮缺陷之间的耦合。磁偶极耦合导致氮空位中心的电子自旋共振频率发生分裂,从而能够读出单个氮电子自旋的状态。在两个中心的自旋分裂相同的磁场中,我们观察到氮电子自旋的强烈极化。极化量可通过光激发功率来控制。我们在时间分辨泵浦 - 探测测量中结合极化和读出过程,以确定单个氮电子自旋的自旋弛豫时间。最后,我们讨论了氮核自旋超精细诱导极化的迹象。