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- W2086229398 abstract "We have measured the room-temperature reflectivity spectra in the infrared and visible range (500--25 000 ${mathrm{cm}}^{mathrm{ensuremath{-}}1}$) of ${mathrm{YBa}}_{2}$${mathrm{Cu}}_{3}$${mathrm{O}}_{6+mathit{x}}$ (0ensuremath{le}xensuremath{le}1) and ${mathrm{Nd}}_{1+mathit{y}}$${mathrm{Ba}}_{2mathrm{ensuremath{-}}mathit{y}}$${mathrm{Cu}}_{3}$${mathrm{O}}_{6+mathit{x}}$ (0ensuremath{le}yensuremath{le}0.5) polished ceramics as a function of doping (x and y). We show that the intensity of the entire infrared spectrum increases with the hole doping level (x or y). When separated into a Drude contribution and a mid-infrared band, both contributions exhibit a correlated increase as holes are transferred into the conducting ${mathrm{CuO}}_{2}$ planes and are therefore argued to be related to free carriers. We note that recent simulations of the t-J model, studied as a function of hole doping, provide a consistent description of such a behavior." @default.
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- W2086229398 date "1992-04-01" @default.
- W2086229398 modified "2023-09-26" @default.
- W2086229398 title "Infrared reflectivity versus doping inYBa2Cu3O6+xandNd1+yBa2−yCu3O6+xceramics: Relationship with thet-Jmodel" @default.
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- W2086229398 doi "https://doi.org/10.1103/physrevb.45.8065" @default.
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