The temperature shifts of the resonances of the NV- center in diamond
arXiv:1310.7303 · doi:10.1103/PhysRevB.90.041201
Abstract
Significant attention has been recently focused on the realization of high precision nano-thermometry using the spin-resonance temperature shift of the negatively charged nitrogen-vacancy (NV-) center in diamond. However, the precise physical origins of the temperature shift is yet to be understood. Here, the shifts of the center's optical and spin resonances are observed and a model is developed that identifies the origin of each shift to be a combination of thermal expansion and electron-phonon interactions. Our results provide new insight into the center's vibronic properties and reveal implications for NV- thermometry.
6 pages, 3 figures
References in corpus (11)
- The nitrogen-vacancy colour centre in diamond
- Nanometer scale quantum thermometry in a living cell
- High precision nano scale temperature sensing using single defects in diamond
- Electronic properties and metrology of the diamond NV- center under pressure
- Nanoscale magnetic imaging of a single electron spin under ambient conditions
- Fluorescence thermometry enhanced by the quantum coherence of single spins in diamond
- Ab initio supercell calculations on nitrogen-vacancy center in diamond: its electronic structure and hyperfine tensors
- The negatively charged nitrogen-vacancy centre in diamond: the electronic solution
- Optical properties of the nitrogen-vacancy singlet levels in diamond
- New infrared emission of the NV centre in diamond: Zeeman and uniaxial stress studies
- Absolute magnetometry based on quantum beats in diamond nitrogen-vacancy centers
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