论文标题

基于NV的量子传感器的有效且全碳电气读数

Efficient and all-carbon electrical readout of a NV based quantum sensor

论文作者

Villaret, Guillaume, Mayer, Ludovic, Schmidt, Martin, Magaletti, Simone, De Feudis, Mary, Markham, Matthew, Edmonds, Andrew, Roch, Jean-François, Debuisschert, Thierry

论文摘要

可以通过光电传导检测来实现钻石中氮胶菌(NV)集合的自旋读数,该检测是对NV电子自旋磁共振共振的光学检测的补充方法。在这里,我们通过收集光电流的石墨平面电极实现光电传统检测。石墨电极是使用XENON聚焦束束对光学级质量钻石晶体进行图案化的,该钻石晶体含有〜1 ppm的氮浓度和几个ppb的NV浓度。研究了NV掺杂的钻石连接的电阻和电流 - 电压特性,调整了532 nm的泵束强度。该连接的行为具有欧姆行为,在较强的偏置场下,我们观察到钻石连接中光学诱导的载体的速度饱和。我们在NV中心集合的连续波状态下执行光电传统检测,以沿着<100>和<111>方向施加的磁场,幅度高于100吨。该技术可以实现全碳钻石量子传感器,该传感器整合电气读数的石墨微观结构。

The spin readout of an ensemble of nitrogen-vacancy (NV) centers in diamond can be realized by a photoconductive detection that is a complementary method to the optical detection of the NV electron spin magnetic resonance. Here, we implement the photoconductive detection through graphitic planar electrodes that collect the photocurrent. Graphitic electrodes are patterned using a xenon Focused-Ion Beam on an Optical-Grade quality diamond crystal containing a nitrogen concentration of ~1 ppm and a NV concentration of a few ppb. Resistance and current-voltage characteristics of the NV-doped diamond junction are investigated tuning the 532 nm pump beam intensity. The junction has an ohmic behavior and under a strong bias field, we observe velocity saturation of the optically-induced carriers in the diamond junction. We perform the photoconductive detection in continuous-wave regime of the magnetic resonance of the NV centers ensemble for a magnetic field applied along the <100> and the <111> direction with a magnitude above 100 mT. This technique enables the realization of all-carbon diamond quantum sensors integrating graphitic microstructures for the electrical readout.

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