Happacher Jodok, Bocquel Juanita, Dinani Hossein T, Tschudin Märta A, Reiser Patrick, Broadway David A, Maze Jeronimo R, Maletinsky Patrick
Department of Physics, University of Basel, Klingelbergstrasse 82, Basel CH-4056, Switzerland.
Escuela de Ingeniería, Facultad de Ciencias, Ingeniería y Tecnología, Universidad Mayor, Santiago 7500994, Chile.
Phys Rev Lett. 2023 Aug 25;131(8):086904. doi: 10.1103/PhysRevLett.131.086904.
We present a comprehensive study of the temperature- and magnetic-field-dependent photoluminescence (PL) of individual NV centers in diamond, spanning the temperature-range from cryogenic to ambient conditions. We directly observe the emergence of the NV's room-temperature effective excited-state structure and provide a clear explanation for a previously poorly understood broad quenching of NV PL at intermediate temperatures around 50 K, as well as the subsequent revival of NV PL. We develop a model based on two-phonon orbital averaging that quantitatively explains all of our findings, including the strong impact that strain has on the temperature dependence of the NV's PL. These results complete our understanding of orbital averaging in the NV excited state and have significant implications for the fundamental understanding of the NV center and its applications in quantum sensing.
我们对金刚石中单个氮空位(NV)中心在从低温到环境温度范围内的温度和磁场依赖光致发光(PL)进行了全面研究。我们直接观察到NV在室温下有效激发态结构的出现,并对之前在50K左右中间温度下NV PL的广泛猝灭以及随后NV PL的恢复给出了清晰解释,此前这一现象理解欠佳。我们基于双声子轨道平均开发了一个模型,该模型定量解释了我们所有的发现,包括应变对NV PL温度依赖性的强烈影响。这些结果完善了我们对NV激发态中轨道平均的理解,对深入理解NV中心及其在量子传感中的应用具有重要意义。