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- W2016562979 abstract "The influence of an oscillatory chemical potential $stackrel{ifmmode tilde{}else ~{}fi{}}{ensuremath{mu}}$ within the gap equation of a commensurate charge-density wave (CDW) is shown to lead to a new type of quantum oscillatory effect in the susceptibility of the nested one-dimensional sheets, with frequency exactly double that of the two-dimensional pocket from which oscillations in $stackrel{ifmmode tilde{}else ~{}fi{}}{ensuremath{mu}}$ originate. On approaching the Pauli paramagnetic limit, $stackrel{ifmmode tilde{}else ~{}fi{}}{ensuremath{mu}}$ further leads to a cascade of multiple first-order phase transitions between CDW and normal metallic phases. These ideas are applied to $ensuremath{alpha}ensuremath{-}(mathrm{B}mathrm{E}mathrm{D}mathrm{T}ensuremath{-}mathrm{T}mathrm{T}mathrm{F}{)}_{2}Mmathrm{Hg}(mathrm{SCN}{)}_{4}$ charge-transfer salts." @default.
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- W2016562979 date "1999-08-16" @default.
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- W2016562979 title "Destabilization of a Charge-Density Wave by an Oscillatory Chemical Potential" @default.
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