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Showing 1 to 8 of 8 for “"Defects in diamond"”.

  1. Exploring quantum geometry and quantum sensing with spin defects in diamond

    Recent years have witnessed rapid development in the field of quantum information science. Quantum technologies are promising to revolutionize many fields, ranging from fast computation and simulation to precise sensing and secure communication. While the performance of quantum devices in the …

    mit Repository record for Exploring quantum geometry and quantum sensing with spin defects in diamond (opens in a new tab)

  2. All-optical method of nanoscale magnetometry for ensembles of nitrogen-vacancy defects in diamond

    The Nitrogen-Vacancy (NV) defect in diamond has shown considerable promise in the field of small scale magnetometry due to its high localization and retention of favorable optical properties at ambient conditions. Current methods of magnetometry with the NV center achieve high sensitivity to fields …

    mit Repository record for All-optical method of nanoscale magnetometry for ensembles of nitrogen-vacancy defects in diamond (opens in a new tab)

  3. Nanoscale engineering of spin-based quantum devices in diamond

    … technologies from the bottom-up requires engineering and control at the level of single quanta. In this thesis, we explore the engineering of a particular quantum system: optically active defects in diamond, known as color centers. Color centers have a variety of advantageous characteristics, …

    mit Repository record for Nanoscale engineering of spin-based quantum devices in diamond (opens in a new tab)

  4. X-Band Rapid-Scan EPR

    … pulse techniques for samples with long longitudinal relaxation time T<sub>1</sub> (N<sub>s</sub><sup>0</sup> defects in diamond, N@C<sub>60</sub>, and amorphous hydrogenated silicon), heterogeneous samples (crystalline 1:1 α,γ-bisdiphenylene-β-phenylallyl (BDPA):benzene), lossy samples (aqueous …

    denver Repository record for X-Band Rapid-Scan EPR (opens in a new tab)

  5. Investigating anharmonic effects in condensed matter systems

    … the properties of solid materials from first principles. Such anharmonic effects can be significant in many cases. A vibrational self-consistent field (VSCF) method is used as the basis for these calculations, which is then improved and applied to a variety of solid state systems. Firstly, work …

    cambridge Repository record for Investigating anharmonic effects in condensed matter systems (opens in a new tab)