Research paperExperimental CharacterizationTime-Resolved Stokes Analysis of Single Photon Emitters in Hexagonal Boron NitrideCaglar Samaner, Serkan AtesarXiv·2025·10.1038/s41598-019-54594-0·arXiv:2504.11193AbstractWe employ the Rotating Quarter-Wave Plate (RQWP) method to comprehensively characterize the polarization state of quantum emitters in hexagonal boron nitride (hBN). By examining both time-averaged and dynamic polarization features, we demonstrate the time-resolved evolution of Stokes parameters from a solid-state single-photon emitter using the RQWP technique. This approach provides more complete polarization information than conventional micro-photoluminescence methods, without requiring modifications to the experimental setup.Read more
Single-photon emitter-1 in hexagonal boron nitride measured by micro-photoluminescence and rotating quarter-wave plate analysis at room temperature.1 characterization4 properties2 figuresExperimentalhBNStudied MaterialExpand
Single-photon emitter-2 in hexagonal boron nitride measured by micro-photoluminescence and polarization analysis at room temperature.1 characterization4 properties1 figureExperimentalhBNStudied MaterialExpand
Research paperExperimental CharacterizationTime-Resolved Stokes Analysis of Single Photon Emitters in Hexagonal Boron NitrideCaglar Samaner, Serkan AtesarXiv·2025·10.1038/s41598-019-54594-0·arXiv:2504.11193AbstractWe employ the Rotating Quarter-Wave Plate (RQWP) method to comprehensively characterize the polarization state of quantum emitters in hexagonal boron nitride (hBN). By examining both time-averaged and dynamic polarization features, we demonstrate the time-resolved evolution of Stokes parameters from a solid-state single-photon emitter using the RQWP technique. This approach provides more complete polarization information than conventional micro-photoluminescence methods, without requiring modifications to the experimental setup.Read more
Single-photon emitter-1 in hexagonal boron nitride measured by micro-photoluminescence and rotating quarter-wave plate analysis at room temperature.1 characterization4 properties2 figuresExperimentalhBNStudied MaterialExpand
Single-photon emitter-2 in hexagonal boron nitride measured by micro-photoluminescence and polarization analysis at room temperature.1 characterization4 properties1 figureExperimentalhBNStudied MaterialExpand
Research paperExperimental CharacterizationTime-Resolved Stokes Analysis of Single Photon Emitters in Hexagonal Boron NitrideCaglar Samaner, Serkan AtesarXiv·2025·10.1038/s41598-019-54594-0·arXiv:2504.11193AbstractWe employ the Rotating Quarter-Wave Plate (RQWP) method to comprehensively characterize the polarization state of quantum emitters in hexagonal boron nitride (hBN). By examining both time-averaged and dynamic polarization features, we demonstrate the time-resolved evolution of Stokes parameters from a solid-state single-photon emitter using the RQWP technique. This approach provides more complete polarization information than conventional micro-photoluminescence methods, without requiring modifications to the experimental setup.Read more
Single-photon emitter-1 in hexagonal boron nitride measured by micro-photoluminescence and rotating quarter-wave plate analysis at room temperature.1 characterization4 properties2 figuresExperimentalhBNStudied MaterialExpand
Single-photon emitter-2 in hexagonal boron nitride measured by micro-photoluminescence and polarization analysis at room temperature.1 characterization4 properties1 figureExperimentalhBNStudied MaterialExpand
Research paperExperimental CharacterizationTime-Resolved Stokes Analysis of Single Photon Emitters in Hexagonal Boron NitrideCaglar Samaner, Serkan AtesarXiv·2025·10.1038/s41598-019-54594-0·arXiv:2504.11193AbstractWe employ the Rotating Quarter-Wave Plate (RQWP) method to comprehensively characterize the polarization state of quantum emitters in hexagonal boron nitride (hBN). By examining both time-averaged and dynamic polarization features, we demonstrate the time-resolved evolution of Stokes parameters from a solid-state single-photon emitter using the RQWP technique. This approach provides more complete polarization information than conventional micro-photoluminescence methods, without requiring modifications to the experimental setup.Read more
Single-photon emitter-1 in hexagonal boron nitride measured by micro-photoluminescence and rotating quarter-wave plate analysis at room temperature.1 characterization4 properties2 figuresExperimentalhBNStudied MaterialExpand
Single-photon emitter-2 in hexagonal boron nitride measured by micro-photoluminescence and polarization analysis at room temperature.1 characterization4 properties1 figureExperimentalhBNStudied MaterialExpand