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SPIN PERMUTATION AT WORK IN THE BCS HAMILTONIAN

机译:BCS Hamiltonian的工作中的旋转排列

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摘要

Owing to conservation of the total projected spin in the elementary two-body scattering process, two electron spin transpositions are shown to secure an exact block-diagonal splitting of the whole BCS Hamiltonian matrix H. Because the transpositions do not commute with the Hamiltonian due to the Pauli principle, the Hilbert space does not supply any representation of the group of transpositions. Likewise every other eigenstate of H is found to be an (odd) eigenstate of a spin transposition operator while the remaining eigenstates of H are not eigenstates of the spin transpositions. Each block-diagonal submatrix is characterized by its own signature indicative of whether all of its eigenstates are eigenstate of each spin transposition operator or not. The submatrix sizes range from a lowest value (= 1 at half-filling) up to the largest value d_M. The groundstate is included in the largest submatrix or in a smaller one according to whether the number of electron pairs is odd or even. The ratio d_0/d_M where d_0 designates the dimension of the BCS Hilbert space grows exponentially with the electron concentration. This result holds for any dimension of space, sign of the two-body interaction and electron filling. The whole spectrum of eigenvalues has been obtained for all possible values of the total momentum of the eigenstates of H up to do ~ 10~5. Possible extensions towards much higher do values are outlined.
机译:由于保护总的投影在初级二体散射过程自旋,示出了两个电子自旋换位,以确保整个BCS哈密顿矩阵H的精确块对角分割由于换位不与哈密顿通勤由于泡利原理,希尔伯特空间不提供该组换位的任何表示。同样h的每一个其他本征态被发现是一(奇数)本征态的自旋换位操作者在H的本征态的剩余不自旋换位本征态。每块对角线子矩阵的特点是所有的本征态是否本征态每个自旋换位算的或不是自己的签名指示。子矩阵尺寸范围从最低值(= 1在半填充)到最大值D_M。的基态是根据电子对的数目是奇数还是偶数包括在最大的子矩阵或在一个较小的一个。比率D_0 / D_M其中D_0指定BCS Hilbert空间的维数呈指数与电子浓度增大。这一结果适用于任何空间尺寸,两个体相互作用和电子填充的登录。已经获得特征值的整个光谱为H的本征态的总动量的所有可能的值高达做〜10〜5。迈向更高的可能的扩展做的值进行了概述。

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