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- W2319597499 abstract "To investigate the band structure of nonmetallic ${mathrm{Bi}}_{2}$${mathrm{Sr}}_{2}$${mathrm{Ca}}_{1mathrm{ensuremath{-}}mathit{x}}$${mathrm{Y}}_{mathit{x}}$${mathrm{Cu}}_{2}$${mathrm{O}}_{mathit{y}}$ (x=0.4--1.0), photon-induced hopping has been employed as a new method, in which transmission spectroscopy has been carried out from 10 to 12 000 ${mathrm{cm}}^{mathrm{ensuremath{-}}1}$. The photon-induced-hopping conduction edge has been found at 5200 ${mathrm{cm}}^{mathrm{ensuremath{-}}1}$. This edge does not shift with (x=0.4--1.0), whereas the absorption is proportional to 1-x. The charge-transfer absorption edge at 12 000 ${mathrm{cm}}^{mathrm{ensuremath{-}}1}$ also does not shift with x. Using this method, the bandwidth has been determined to be 5200 ${mathrm{cm}}^{mathrm{ensuremath{-}}1}$. Obvious midgap states have not been observed." @default.
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- W2319597499 date "1993-02-22" @default.
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- W2319597499 title "Electronic band structure ofBi2Sr2Ca1−xYxCu2Oy(x=0.4 to 1.0) determined by infrared-induced intersite transitions" @default.
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- W2319597499 doi "https://doi.org/10.1103/physrevlett.70.1175" @default.
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