Research paperExperimental CharacterizationTheoreticalSpectrally resolved far-field emission pattern of single photon emitters in MoS₂Katja Barthelmi, Tomer Amit, Lukas Sigl, Mirco Troue et al.2024·10.48550/arxiv.2407.17968·arXiv:2407.17968AbstractWe explore the optical dipole orientation of single photon emitters in monolayer MoS₂ produced by a focused helium ion beam. The single photon emitters are attributed to single sulfur vacancies. Angle-resolved, spectrally resolved back-focal-plane photoluminescence reveals sub-bandgap emission lines and indicates predominantly in-plane optical dipoles, in agreement with analytical modeling and ab initio theory.Read more
Monolayer MoS₂ encapsulated in hBN on SiO₂/Si and irradiated by a focused He-ion beam to create optically active defects / single photon emitters.1 preparation2 characterizations5 properties3 figuresExperimentalMoS₂Studied MaterialhBNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationTheoreticalSpectrally resolved far-field emission pattern of single photon emitters in MoS₂Katja Barthelmi, Tomer Amit, Lukas Sigl, Mirco Troue et al.2024·10.48550/arxiv.2407.17968·arXiv:2407.17968AbstractWe explore the optical dipole orientation of single photon emitters in monolayer MoS₂ produced by a focused helium ion beam. The single photon emitters are attributed to single sulfur vacancies. Angle-resolved, spectrally resolved back-focal-plane photoluminescence reveals sub-bandgap emission lines and indicates predominantly in-plane optical dipoles, in agreement with analytical modeling and ab initio theory.Read more
Monolayer MoS₂ encapsulated in hBN on SiO₂/Si and irradiated by a focused He-ion beam to create optically active defects / single photon emitters.1 preparation2 characterizations5 properties3 figuresExperimentalMoS₂Studied MaterialhBNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationTheoreticalSpectrally resolved far-field emission pattern of single photon emitters in MoS₂Katja Barthelmi, Tomer Amit, Lukas Sigl, Mirco Troue et al.2024·10.48550/arxiv.2407.17968·arXiv:2407.17968AbstractWe explore the optical dipole orientation of single photon emitters in monolayer MoS₂ produced by a focused helium ion beam. The single photon emitters are attributed to single sulfur vacancies. Angle-resolved, spectrally resolved back-focal-plane photoluminescence reveals sub-bandgap emission lines and indicates predominantly in-plane optical dipoles, in agreement with analytical modeling and ab initio theory.Read more
Monolayer MoS₂ encapsulated in hBN on SiO₂/Si and irradiated by a focused He-ion beam to create optically active defects / single photon emitters.1 preparation2 characterizations5 properties3 figuresExperimentalMoS₂Studied MaterialhBNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationTheoreticalSpectrally resolved far-field emission pattern of single photon emitters in MoS₂Katja Barthelmi, Tomer Amit, Lukas Sigl, Mirco Troue et al.2024·10.48550/arxiv.2407.17968·arXiv:2407.17968AbstractWe explore the optical dipole orientation of single photon emitters in monolayer MoS₂ produced by a focused helium ion beam. The single photon emitters are attributed to single sulfur vacancies. Angle-resolved, spectrally resolved back-focal-plane photoluminescence reveals sub-bandgap emission lines and indicates predominantly in-plane optical dipoles, in agreement with analytical modeling and ab initio theory.Read more
Monolayer MoS₂ encapsulated in hBN on SiO₂/Si and irradiated by a focused He-ion beam to create optically active defects / single photon emitters.1 preparation2 characterizations5 properties3 figuresExperimentalMoS₂Studied MaterialhBNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand