Research paperComputational DFTComputed PhononComputed PLNative antisite defects in h-BNSong Li, Pei Li, Adam GaliarXiv·2025·10.21203/rs.3.rs-·arXiv:2501.01133AbstractHexagonal boron nitride (hBN) is an excellent host for solid-state single phonon emitters. Experimental observed emission ranges from infrared to ultraviolet. The emission centers are generally attributed to either intrinsic or extrinsic point defects embedded into hBN. Nevertheless, the microscopic structure of most of these defect emitters is uncertain. Here, through density-functional theory calculations we studied the native antisite defects in hBN. We find that the neutral boron antisite might be a nonmagnetic single photon source with zero-phonon-line (ZPL) at 1.58 eV and such a lineshape that is often observed in experiments. Furthermore, the positively charged nitrogen antisite might be associated with a dim color center recently observed as a blue emitter with ZPL at 2.63 eV. These simple single substitution defects indicate the existence of out-of-plane phonon mode which significantly affects the optical properties. Our results could provide useful information for identification of quantum emitters in hBN.Read more
Two-layer bulk h-BN supercell with a boron antisite defect.3 characterizations12 properties3 figuresSimulated Supercell DftBNStudied MaterialBNStudied MaterialExpand
Two-layer bulk h-BN supercell with a nitrogen antisite defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialNBStudied MaterialExpand
Two-layer bulk h-BN supercell with a boron-nitrogen antisite pair defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialBNNBStudied MaterialExpand
Research paperComputational DFTComputed PhononComputed PLNative antisite defects in h-BNSong Li, Pei Li, Adam GaliarXiv·2025·10.21203/rs.3.rs-·arXiv:2501.01133AbstractHexagonal boron nitride (hBN) is an excellent host for solid-state single phonon emitters. Experimental observed emission ranges from infrared to ultraviolet. The emission centers are generally attributed to either intrinsic or extrinsic point defects embedded into hBN. Nevertheless, the microscopic structure of most of these defect emitters is uncertain. Here, through density-functional theory calculations we studied the native antisite defects in hBN. We find that the neutral boron antisite might be a nonmagnetic single photon source with zero-phonon-line (ZPL) at 1.58 eV and such a lineshape that is often observed in experiments. Furthermore, the positively charged nitrogen antisite might be associated with a dim color center recently observed as a blue emitter with ZPL at 2.63 eV. These simple single substitution defects indicate the existence of out-of-plane phonon mode which significantly affects the optical properties. Our results could provide useful information for identification of quantum emitters in hBN.Read more
Two-layer bulk h-BN supercell with a boron antisite defect.3 characterizations12 properties3 figuresSimulated Supercell DftBNStudied MaterialBNStudied MaterialExpand
Two-layer bulk h-BN supercell with a nitrogen antisite defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialNBStudied MaterialExpand
Two-layer bulk h-BN supercell with a boron-nitrogen antisite pair defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialBNNBStudied MaterialExpand
Research paperComputational DFTComputed PhononComputed PLNative antisite defects in h-BNSong Li, Pei Li, Adam GaliarXiv·2025·10.21203/rs.3.rs-·arXiv:2501.01133AbstractHexagonal boron nitride (hBN) is an excellent host for solid-state single phonon emitters. Experimental observed emission ranges from infrared to ultraviolet. The emission centers are generally attributed to either intrinsic or extrinsic point defects embedded into hBN. Nevertheless, the microscopic structure of most of these defect emitters is uncertain. Here, through density-functional theory calculations we studied the native antisite defects in hBN. We find that the neutral boron antisite might be a nonmagnetic single photon source with zero-phonon-line (ZPL) at 1.58 eV and such a lineshape that is often observed in experiments. Furthermore, the positively charged nitrogen antisite might be associated with a dim color center recently observed as a blue emitter with ZPL at 2.63 eV. These simple single substitution defects indicate the existence of out-of-plane phonon mode which significantly affects the optical properties. Our results could provide useful information for identification of quantum emitters in hBN.Read more
Two-layer bulk h-BN supercell with a boron antisite defect.3 characterizations12 properties3 figuresSimulated Supercell DftBNStudied MaterialBNStudied MaterialExpand
Two-layer bulk h-BN supercell with a nitrogen antisite defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialNBStudied MaterialExpand
Two-layer bulk h-BN supercell with a boron-nitrogen antisite pair defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialBNNBStudied MaterialExpand
Research paperComputational DFTComputed PhononComputed PLNative antisite defects in h-BNSong Li, Pei Li, Adam GaliarXiv·2025·10.21203/rs.3.rs-·arXiv:2501.01133AbstractHexagonal boron nitride (hBN) is an excellent host for solid-state single phonon emitters. Experimental observed emission ranges from infrared to ultraviolet. The emission centers are generally attributed to either intrinsic or extrinsic point defects embedded into hBN. Nevertheless, the microscopic structure of most of these defect emitters is uncertain. Here, through density-functional theory calculations we studied the native antisite defects in hBN. We find that the neutral boron antisite might be a nonmagnetic single photon source with zero-phonon-line (ZPL) at 1.58 eV and such a lineshape that is often observed in experiments. Furthermore, the positively charged nitrogen antisite might be associated with a dim color center recently observed as a blue emitter with ZPL at 2.63 eV. These simple single substitution defects indicate the existence of out-of-plane phonon mode which significantly affects the optical properties. Our results could provide useful information for identification of quantum emitters in hBN.Read more
Two-layer bulk h-BN supercell with a boron antisite defect.3 characterizations12 properties3 figuresSimulated Supercell DftBNStudied MaterialBNStudied MaterialExpand
Two-layer bulk h-BN supercell with a nitrogen antisite defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialNBStudied MaterialExpand
Two-layer bulk h-BN supercell with a boron-nitrogen antisite pair defect.3 characterizations4 properties3 figuresSimulated Supercell DftBNStudied MaterialBNNBStudied MaterialExpand