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- W1965624385 startingPage "14050" @default.
- W1965624385 abstract "The results of electronic-structure calculations for ${mathrm{GeCuO}}_{3}$ feature a pair of narrow (ensuremath{sim}1 eV) half-filled, one-dimensional ${mathrm{ensuremath{sigma}}}^{mathrm{*}}$ conduction bands that originate from two edge-sharing ${mathrm{CuO}}_{2}$ linear chains in the orthorhombic cell. Unusual transport properties are predicted since the confined carrier motion along the chains (at any band filling) requires tunneling through nodal charge-density regions. At the spin-Peierls transition, the dimerization of the ${mathrm{CuO}}_{2}$ chains can open a band gap at ${mathit{E}}_{mathit{F}}$, provided that the Cu displacements in neighboring chains are staggered." @default.
- W1965624385 created "2016-06-24" @default.
- W1965624385 creator A5032977546 @default.
- W1965624385 date "1994-05-15" @default.
- W1965624385 modified "2023-09-24" @default.
- W1965624385 title "Band picture of the spin-Peierls transition in the spin-1/2 linear-chain cuprateGeCuO3" @default.
- W1965624385 doi "https://doi.org/10.1103/physrevb.49.14050" @default.
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