Filter By:

Journal Check one or more journals to show results from those journals only.

Choose more journals

Article type Check one or more article types to show results from those article types only.
Subject Check one or more subjects to show results from those subjects only.
Date Choose a date option to show results from those dates only.

Custom date range

Clear all filters
Sort by:
Showing 1–4 of 4 results
Advanced filters: Author: A. Laraoui Clear advanced filters
  • Many aspects of energy flow in nanostructures are not well understood due to difficulties associated with resolution. Here, Laraoui et al. use a diamond-nanocrystal-hosted nitrogen vacancy centre as a nanoscale probe with atomic force microscopy to image thermal conductivity.

    • Abdelghani Laraoui
    • Halley Aycock-Rizzo
    • Carlos A. Meriles
    ResearchOpen Access
    Nature Communications
    Volume: 6, P: 1-8
  • The spin states associated with nitrogen vacancies in diamond could be useful in the development of solid-state quantum information processing. Laraoui et al. resolve the temporal dynamics of spins associated with C-13 atoms near such vacancies to better understand and perhaps better exploit their behaviour.

    • Abdelghani Laraoui
    • Florian Dolde
    • Carlos A. Meriles
    Research
    Nature Communications
    Volume: 4, P: 1-7
  • Manipulating nitrogen vacancies in nitrogen-doped diamond is important for quantum information processing. Here the authors use a two-colour excitation to redistribute the localized trapping charges in type-1b diamonds.

    • Harishankar Jayakumar
    • Jacob Henshaw
    • Carlos A. Meriles
    ResearchOpen Access
    Nature Communications
    Volume: 7, P: 1-8
  • Nitrogen vacancy (NV) centres in diamond can be used for NMR spectroscopy, but increased sensitivity is needed to avoid long measurement times. Kehayias et al. present a nanostructured diamond grating with a high density of NV centres, enabling NMR spectroscopy of picoliter-volume solutions.

    • P. Kehayias
    • A. Jarmola
    • V. M. Acosta
    ResearchOpen Access
    Nature Communications
    Volume: 8, P: 1-8