Soft x-ray photoemission study of new BiS-layered superconductor LaOFBiS
arXiv:1401.5173 · doi:10.7566/JPSJ.83.033703
Abstract
We use core level and valence band soft x-ray photoemission spectroscopy (SXPES) to investigate electronic structure of new BiS layered superconductor LaOFBiS. Core level spectra of doped samples show a new spectral feature at the lower binding energy side of the Bi 4 main peak, which may be explained by core-hole screening with metallic states near the Fermi level (). Experimental electronic structure and its dependence (higher binding energy shift of the valence band as well as appearance of new states near having dominant Bi 6 character) were found to be consistent with the predictions of band structure calculations in general. Noticeable deviation of the spectral shape of the states near from that of calculations might give insight into the interesting physical properties. These results provide first experimental electronic structure of the new BiS layered superconductors.
14 pages, 4 figures
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Cited by in corpus (8)
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- Site Selectivity on Chalcogen Atoms in Superconducting La(O,F)BiSSe
- Proximity to Fermi-surface topological change in superconducting LaO0.54F0.46BiS2
- First single crystal growth and structural analysis of superconducting layered bismuth oxyselenide; La(O,F)BiSe2
- The magnetic and electronic properties of Oxyselenides - influence of transition metal ions and lanthanides
- Enhanced thermoelectricity by controlled local structure in bismuth-chalcogenides
- Bulk superconductivity in Pb-substituted BiS-based compounds studied by hard-x-ray spectroscopy
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