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首页> 外文期刊>Physical review letters >Density-Matrix Renormalization Group Study of Pairing when Electron-Electron and Electron-Phonon Interactions Coexist: Effect of the Electronic Band Structure
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Density-Matrix Renormalization Group Study of Pairing when Electron-Electron and Electron-Phonon Interactions Coexist: Effect of the Electronic Band Structure

机译:电子-电子与电子-声子相互作用共存时的配对密度矩阵重整化组研究:电子能带结构的影响

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The density-matrix renormalization group is used to study the pairing when both electron-electron and electron-phonon interactions are strong in the Holstein-Hubbard model at half filling in a region intermediate between the adiabatic (Migdal's) and antiadiabatic limits. We have found (ⅰ) the pairing correlation obtained for a one-dimensional system is nearly degenerate with the charge density-wave correlation in a region where the phonon-induced attraction is comparable with the electron-electron repulsion, but (ⅱ) pairing becomes dominant when we destroy the electron-hole symmetry in a trestle lattice. This provides an instance in which pairing can arise, in a lattice-structure dependent manner, from coexisting electron-electron and electron-phonon interactions.
机译:在Holstein-Hubbard模型中,当电子-电子和电子-声子相互作用在绝热(Migdal极限)和反绝热极限之间的一半处充满时,密度矩阵重整化组用于研究配对。我们发现(ⅰ)一维系统获得的配对相关性几乎在由声子引起的吸引与电子-电子排斥力相当的区域中的电荷密度-波相关性中退化,但是(ⅱ)配对变为当我们破坏栈桥晶格中的电子-空穴对称性时,这种现象就占主导地位。这提供了一种实例,其中配对可以以晶格结构相关的方式从共存的电子-电子和电子-声子相互作用中产生。

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