Skip to content

Boron–nitrogen co-terminated diamond (110) surface for nitrogen-vacancy quantum sensors from first-principles calculations

MetadataDetails
Publication Date2022-11-04
JournalJournal of Physics Condensed Matter
AuthorsZhaolong Sun, Nan Gao
InstitutionsJilin University, Jilin Agricultural Science and Technology University

Abstract The nitrogen-vacancy (NV) center in diamond surface is a critical issue in quantum sensors with no sensitivity to surface terminators. We investigate the structural stabilities and electronic properties of boron (B)-N co-terminated diamond (110) surface based on first-principles calculations. The B-N co-terminated diamond (110) surfaces combined with monolayer coverage of hydrogen (H) and fluorine (F) adsorption are dynamically and thermally stable. Remarkably, the H/F mixed (H/F = 1.0) adsorption surface has neither surface spin noise nor surface-related state, and a positive electron affinity of 1.11 eV, thus it could be a prospective candidate for NV-based quantum sensors.

  1. 2011 - Diamond photonics [Crossref]
  2. 2014 - Nitrogen-vacancy centers in diamond: nanoscale sensors for physics and biology [Crossref]
  3. 2020 - Sensitivity optimization for NV-diamond magnetometry [Crossref]
  4. 2018 - Critical thermalization of a disordered dipolar spin system in diamond [Crossref]
  5. 2021 - Tailoring of typical color centers in diamond for photonics [Crossref]
  6. 2017 - Entanglement distillation between solid-state quantum network nodes [Crossref]
  7. 2014 - Investigation of surface magnetic noise by shallow spins in diamond [Crossref]
  8. 2018 - Spin properties of dense near-surface ensembles of nitrogen-vacancy centers in diamond [Crossref]
  9. 2010 - Surface-induced charge state conversion of nitrogen-vacancy defects in nanodiamonds [Crossref]
  10. 2014 - Proper surface termination for luminescent near-surface NV centers in diamond [Crossref]