English

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

Quantum Physics 2023-05-24 v1 Materials Science Applied Physics

Abstract

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.

Keywords

Cite

@article{arxiv.2212.10349,
  title  = {Efficient and all-carbon electrical readout of a NV based quantum sensor},
  author = {Guillaume Villaret and Ludovic Mayer and Martin Schmidt and Simone Magaletti and Mary De Feudis and Matthew Markham and Andrew Edmonds and Jean-François Roch and Thierry Debuisschert},
  journal= {arXiv preprint arXiv:2212.10349},
  year   = {2023}
}

Comments

11 pages, 3 figures, the following article has been submitted to Applied Physics Letters

R2 v1 2026-06-28T07:44:51.179Z