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We have investigated the effect of the magnetic field (B) on the very low-temperature equilibrium heat capacity c<Subscript>eq</Subscript> of the quasi-1 D organic compound (TMTTF)<Subscript>2</Subscript>Br, characterized by a commensurate Spin Density Wave (SDW) ground state. Below 1 K, c<Subscript>eq</Subscript> is dominated by a Schottky-like A<Subscript>S</Subscript>T<Superscript>-2</Superscript>...</superscript></subscript></subscript></subscript></subscript>
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We report the charge state modification effects at the Mn site on the ground state properties of colossal magnetoresistive manganites. Ta<Superscript>5+</Superscript> substitution results in an appreciable increase in the lattice parameters and unit cell volume due to increased Mn<Superscript>3+</Superscript> concentration. The...</superscript></superscript>
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We compute the magnetic susceptibility and specific heat of the spin-<InlineEquation ID="Equ2"> <EquationSource Format="TEX">$\frac{1}{2}$</EquationSource> </InlineEquation> Heisenberg model on the kagome lattice with high-temperature expansions and exact diagonalizations. We compare the results with the experimental data on ZnCu<Subscript>3</Subscript>(OH)<Subscript>6</Subscript>Cl<Subscript>2</Su bscript> obtained by Helton et al. [Phys. Rev. Lett....<//su></subscript></subscript></subscript></equationsource></inlineequation>
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