Sub-to-super-Poissonian photon statistics in cathodoluminescence of color center ensembles in isolated diamond crystals
arXiv:2302.03386 · doi:10.1515/nanoph-2023-0204
Abstract
Impurity-vacancy centers in diamond offer a new class of robust photon sources with versatile quantum properties. While individual color centers commonly act as single-photon sources, their ensembles have been theoretically predicted to have tunable photon-emission statistics. Importantly, the particular type of excitation affects the emission properties of a color center ensemble within a diamond crystal. While optical excitation favors non-synchronized excitation of color centers within an ensemble, electron-beam excitation can synchronize the emitters and thereby provides a control of the second-order correlation function . In this letter, we demonstrate experimentally that the photon stream from an ensemble of color centers can exhibit both above and below unity. Such a photon source based on an ensemble of few color centers in a diamond crystal provides a highly tunable platform for informational technologies operating at room temperature.
References in corpus (7)
- Electron Beam Spectroscopy for Nanophotonics
- Spatially resolved quantum nano-optics of single photons using an electron microscope
- Cathodoluminescence excitation spectroscopy: nanoscale imaging of excitation pathways
- Single germanium vacancy centres in nanodiamonds with bulk-like spectral stability
- Disentangling cathodoluminescence spectra in nanophotonics: particle eigenmodes vs transition radiation
- Superbunching in cathodoluminescence: a master equation approach
- The importance of substrates for the visibility of "dark" plasmonic modes
Cited by in corpus (5)
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