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Titlebook: Low-Dimensional Conductors and Superconductors; D. Jérome,L. G. Caron Book 1987 Springer Science+Business Media New York 1987 density.mate

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Gilles Montambauxg the permanent displacements of a block in order to confirm the existence of this type of failure mechanism. Further, a series of cyclic tests were performed on all nine physical models to determine the threshold temperature change at which plastic deformation occurs for different block/wedge ratio
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Structural Instabilities of One-Dimensional Conductors,bit low temperature periodic lattice distortions (PLD) related to instabilities of the 1D electronic gas. The underlying physical mechanism was found by Peierls more than 30 years ago: a 1D metal, of ρ independent electrons per unit cell, is unstable, at T = OK, with respect to a periodic modulation
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Monte Carlo Simulation of Models for Low-Dimensional Conductors, the application of Monte Carlo techniques to the study of collective effects in models for low-dimensional conductors. Topics discussed in detail include the phase diagram of the half-filled extended Hubbard model, 2. and 4. instabilities, and the effect of Coulomb interactions and quantum fluctuat
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Energy Scale in Organic Conductors and the Problem of Superconductivity in the Bechgaard Salts,. eV corresponding to temperatures of 10. K (I shall use the temperature T scale from now on equivalently for energies or frequencies thereby implying that k. = ħ=1). The atomic or molecular valence orbitals which are more relevant to the chemical processes have energies in the range 10. − 10. K. Th
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