钻石
化学气相沉积
空位缺陷
量子计量学
氮空位中心
氮气
材料科学
计量学
纳米技术
量子
化学物理
光电子学
化学
结晶学
量子信息
光学
物理
量子网络
复合材料
有机化学
量子力学
作者
Julia Michl,Tokuyuki Teraji,Sebastian Zaiser,Ingmar Jakobi,G. Waldherr,Florian Dolde,Philipp Neumann,Marcus W. Doherty,Neil B. Manson,Junichi Isoya,Jörg Wrachtrup
摘要
Synthetic diamond production is key to the development of quantum metrology and quantum information applications of diamond. The major quantum sensor and qubit candidate in diamond is the nitrogen-vacancy (NV) color center. This lattice defect comes in four different crystallographic orientations leading to an intrinsic inhomogeneity among NV centers that is undesirable in some applications. Here, we report a microwave plasma-assisted chemical vapor decomposition (MPCVD) diamond growth technique on (111)-oriented substrates that yields perfect alignment ($94\pm2%$) of as-grown NV centers along a single crystallographic direction. In addition, clear evidence is found that the majority ($74\pm4%$) of the aligned NV centers were formed by the nitrogen being first included in the (111) growth surface and then followed by the formation of a neighboring vacancy on top. The achieved homogeneity of the grown NV centers will tremendously benefit quantum information and metrology applications.
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