Research paperExperimental CharacterizationHighly polarized single photon emitter from intrinsic localized excitons in a WSe₂/CrSBr heterostructureVarghese Alapatt, Francisco Marques-Moros, Carla Boix-Constant, Samuel Manas-Valero et al.2024·10.48550/arxiv.2409.04749·arXiv:2409.04749AbstractSingle photons emitters (SPEs) are key components in quantum information applications and are commonly generated in 2D materials by inhomogeneous strain engineering. Here, we report an alternative approach that involves a 2D semiconductor/2D magnet heterostructure. The optical study of the WSe₂/CrSBr heterostructures reveals several new emission lines at lower energies compared to characteristic WSe₂ emissions, that are assigned to localized excitons. Further investigation demonstrates that one of these emergent lines is an SPE with a strong valley polarization response and large energy shift with the field-induced metamagnetic transition in CrSBr, linking it to the magnetic proximity effect of the adjacent CrSBr layer. In contrast to previous reports on WSe₂ that only allow tuning of the SPEs by out-of-plane magnetic field, our emitter is sensitive to both in- and out-of-plane fields. Our findings demonstrate the potential of this approach for improved control and polarization of SPEs in 2D materials.Read more
WSe₂ monolayer placed on top of a few-layer CrSBr flake forming a van der Waals heterostructure on a silica-on-silicon substrate.2 characterizations4 properties4 figuresExperimentalWSe₂Studied MaterialCrSBrStudied MaterialExpand
Reference monolayer WSe₂ flake separated from the heterostructure region.1 characterization4 figuresExperimentalWSe₂Studied MaterialExpand
Reference few-layer CrSBr flake used as the magnetic layer reference.1 characterization4 figuresExperimentalCrSBrStudied MaterialExpand
Research paperExperimental CharacterizationHighly polarized single photon emitter from intrinsic localized excitons in a WSe₂/CrSBr heterostructureVarghese Alapatt, Francisco Marques-Moros, Carla Boix-Constant, Samuel Manas-Valero et al.2024·10.48550/arxiv.2409.04749·arXiv:2409.04749AbstractSingle photons emitters (SPEs) are key components in quantum information applications and are commonly generated in 2D materials by inhomogeneous strain engineering. Here, we report an alternative approach that involves a 2D semiconductor/2D magnet heterostructure. The optical study of the WSe₂/CrSBr heterostructures reveals several new emission lines at lower energies compared to characteristic WSe₂ emissions, that are assigned to localized excitons. Further investigation demonstrates that one of these emergent lines is an SPE with a strong valley polarization response and large energy shift with the field-induced metamagnetic transition in CrSBr, linking it to the magnetic proximity effect of the adjacent CrSBr layer. In contrast to previous reports on WSe₂ that only allow tuning of the SPEs by out-of-plane magnetic field, our emitter is sensitive to both in- and out-of-plane fields. Our findings demonstrate the potential of this approach for improved control and polarization of SPEs in 2D materials.Read more
WSe₂ monolayer placed on top of a few-layer CrSBr flake forming a van der Waals heterostructure on a silica-on-silicon substrate.2 characterizations4 properties4 figuresExperimentalWSe₂Studied MaterialCrSBrStudied MaterialExpand
Reference monolayer WSe₂ flake separated from the heterostructure region.1 characterization4 figuresExperimentalWSe₂Studied MaterialExpand
Reference few-layer CrSBr flake used as the magnetic layer reference.1 characterization4 figuresExperimentalCrSBrStudied MaterialExpand
Research paperExperimental CharacterizationHighly polarized single photon emitter from intrinsic localized excitons in a WSe₂/CrSBr heterostructureVarghese Alapatt, Francisco Marques-Moros, Carla Boix-Constant, Samuel Manas-Valero et al.2024·10.48550/arxiv.2409.04749·arXiv:2409.04749AbstractSingle photons emitters (SPEs) are key components in quantum information applications and are commonly generated in 2D materials by inhomogeneous strain engineering. Here, we report an alternative approach that involves a 2D semiconductor/2D magnet heterostructure. The optical study of the WSe₂/CrSBr heterostructures reveals several new emission lines at lower energies compared to characteristic WSe₂ emissions, that are assigned to localized excitons. Further investigation demonstrates that one of these emergent lines is an SPE with a strong valley polarization response and large energy shift with the field-induced metamagnetic transition in CrSBr, linking it to the magnetic proximity effect of the adjacent CrSBr layer. In contrast to previous reports on WSe₂ that only allow tuning of the SPEs by out-of-plane magnetic field, our emitter is sensitive to both in- and out-of-plane fields. Our findings demonstrate the potential of this approach for improved control and polarization of SPEs in 2D materials.Read more
WSe₂ monolayer placed on top of a few-layer CrSBr flake forming a van der Waals heterostructure on a silica-on-silicon substrate.2 characterizations4 properties4 figuresExperimentalWSe₂Studied MaterialCrSBrStudied MaterialExpand
Reference monolayer WSe₂ flake separated from the heterostructure region.1 characterization4 figuresExperimentalWSe₂Studied MaterialExpand
Reference few-layer CrSBr flake used as the magnetic layer reference.1 characterization4 figuresExperimentalCrSBrStudied MaterialExpand
Research paperExperimental CharacterizationHighly polarized single photon emitter from intrinsic localized excitons in a WSe₂/CrSBr heterostructureVarghese Alapatt, Francisco Marques-Moros, Carla Boix-Constant, Samuel Manas-Valero et al.2024·10.48550/arxiv.2409.04749·arXiv:2409.04749AbstractSingle photons emitters (SPEs) are key components in quantum information applications and are commonly generated in 2D materials by inhomogeneous strain engineering. Here, we report an alternative approach that involves a 2D semiconductor/2D magnet heterostructure. The optical study of the WSe₂/CrSBr heterostructures reveals several new emission lines at lower energies compared to characteristic WSe₂ emissions, that are assigned to localized excitons. Further investigation demonstrates that one of these emergent lines is an SPE with a strong valley polarization response and large energy shift with the field-induced metamagnetic transition in CrSBr, linking it to the magnetic proximity effect of the adjacent CrSBr layer. In contrast to previous reports on WSe₂ that only allow tuning of the SPEs by out-of-plane magnetic field, our emitter is sensitive to both in- and out-of-plane fields. Our findings demonstrate the potential of this approach for improved control and polarization of SPEs in 2D materials.Read more
WSe₂ monolayer placed on top of a few-layer CrSBr flake forming a van der Waals heterostructure on a silica-on-silicon substrate.2 characterizations4 properties4 figuresExperimentalWSe₂Studied MaterialCrSBrStudied MaterialExpand
Reference monolayer WSe₂ flake separated from the heterostructure region.1 characterization4 figuresExperimentalWSe₂Studied MaterialExpand
Reference few-layer CrSBr flake used as the magnetic layer reference.1 characterization4 figuresExperimentalCrSBrStudied MaterialExpand