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Pandey, Juhi; Soni, Ajay
Applied surface science, 01/2019, Letnik: 463Journal Article
Systematic observation of biexciton AXX and A2s excited state of A exciton along with ground state (A1s) in monolayer MoS2 at 4 K, by temperature dependent and power dependent non-resonant photoluminescence spectroscopy. Display omitted •Systematic observation of biexciton from 4 K to room temperature by photoluminescence study of monolayer MoS2.•Distinction of biexciton from A- trion and ground state of A exciton in MoS2.•Exciton bound to sulfur vacancies have been distinguished from biexciton having binding energy ∼ 60 meV. Being direct band gap semiconductor, two-dimensional monolayer (ML) MoS2 has remarkable optical transitions arising from excitons, trions, biexciton and defects mediated bound states. However, experimental realization of biexciton in ML MoS2 has been challenging due to broad spectral feature of exciton. Here, we report on systematic observation of biexciton (AXX ∼ 1.90 eV) along with A- trion ∼ 1.92 eV and ground state exciton A1s ∼ 1.96 eV in ML MoS2 at 4 K, by laser-power and temperature-dependent non-resonant photoluminescence (PL) spectroscopy. At low temperatures the excited state of A exciton has also been observed, A2s ∼ 2.13 eV, which consequently merges in thermal broadening of B excitons, with rise in temperature. With excitation energy and power dependent PL, emission arising from exciton bound to sulfur vacancy (∼1.82 eV) have been distinguished from biexciton. Thus understanding of such excitonic states and biexcitons is useful for future quantum information processing, optoelectronic, photonics and THz applications.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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