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金刚石中氮空位中心电子自旋共振的光电探测

Photoelectric detection of electron spin resonance of nitrogen-vacancy centres in diamond.

作者信息

Bourgeois E, Jarmola A, Siyushev P, Gulka M, Hruby J, Jelezko F, Budker D, Nesladek M

机构信息

IMOMEC division, IMEC, Wetenschapspark 1, B-3590 Diepenbeek, Belgium.

Institute for Materials Research (IMO), Hasselt University, Wetenschapspark 1, B-3590 Diepenbeek, Belgium.

出版信息

Nat Commun. 2015 Oct 21;6:8577. doi: 10.1038/ncomms9577.

Abstract

The readout of negatively charged nitrogen-vacancy centre electron spins is essential for applications in quantum computation, metrology and sensing. Conventional readout protocols are based on the detection of photons emitted from nitrogen-vacancy centres, a process limited by the efficiency of photon collection. We report on an alternative principle for detecting the magnetic resonance of nitrogen-vacancy centres, allowing the direct photoelectric readout of nitrogen-vacancy centres spin state in an all-diamond device. The photocurrent detection of magnetic resonance scheme is based on the detection of charge carriers promoted to the conduction band of diamond by two-photon ionization of nitrogen-vacancy centres. The optical and photoelectric detection of magnetic resonance are compared, by performing both types of measurements simultaneously. The minima detected in the measured photocurrent at resonant microwave frequencies are attributed to the spin-dependent ionization dynamics of nitrogen-vacancy, originating from spin-selective non-radiative transitions to the metastable singlet state.

摘要

带负电荷的氮空位中心电子自旋的读出对于量子计算、计量学和传感应用至关重要。传统的读出协议基于对氮空位中心发射光子的检测,这一过程受光子收集效率的限制。我们报道了一种检测氮空位中心磁共振的替代原理,可在全金刚石器件中直接光电读出氮空位中心的自旋状态。磁共振方案的光电流检测基于对通过氮空位中心双光子电离促进到金刚石导带的电荷载流子的检测。通过同时进行两种测量,对磁共振的光学检测和光电检测进行了比较。在共振微波频率下测量的光电流中检测到的最小值归因于氮空位的自旋相关电离动力学,其源于自旋选择性非辐射跃迁到亚稳单重态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/697a/4639813/ce2fed0dab13/ncomms9577-f1.jpg

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