Happacher Jodok, Broadway David A, Bocquel Juanita, Reiser Patrick, Jimenéz Alejandro, Tschudin Märta A, Thiel Lucas, Rohner Dominik, Puigibert Marcel Li Grimau, Shields Brendan, Maze Jeronimo R, Jacques Vincent, Maletinsky Patrick
Department of Physics, University of Basel, Klingelbergstrasse 82, Basel CH-4056, Switzerland.
Facultad de Física, Pontificia Universidad Católica de Chile, Santiago 7820436, Chile.
Phys Rev Lett. 2022 Apr 29;128(17):177401. doi: 10.1103/PhysRevLett.128.177401.
We investigate the magnetic field dependent photophysics of individual nitrogen-vacancy (NV) color centers in diamond under cryogenic conditions. At distinct magnetic fields, we observe significant reductions in the NV photoluminescence rate, which indicate a marked decrease in the optical readout efficiency of the NV's ground state spin. We assign these dips to excited state level anticrossings, which occur at magnetic fields that strongly depend on the effective, local strain environment of the NV center. Our results offer new insights into the structure of the NVs' excited states and a new tool for their effective characterization. Using this tool, we observe strong indications for strain-dependent variations of the NV's orbital g factor, obtain new insights into NV charge state dynamics, and draw important conclusions regarding the applicability of NV centers for low-temperature quantum sensing.
我们研究了低温条件下金刚石中单个氮空位(NV)色心的磁场依赖光物理性质。在不同的磁场下,我们观察到NV光致发光速率显著降低,这表明NV基态自旋的光学读出效率明显下降。我们将这些下降归因于激发态能级反交叉,其发生的磁场强烈依赖于NV中心的有效局部应变环境。我们的结果为NV激发态的结构提供了新的见解,并为其有效表征提供了一种新工具。使用该工具,我们观察到NV轨道g因子随应变变化的强烈迹象,获得了关于NV电荷态动力学的新见解,并就NV中心在低温量子传感中的适用性得出了重要结论。