首页> 外文期刊>The European physical journal, B. Condensed matter physics >Hole dispersions for antiferromagnetic spin-1/2 two-leg ladders by self-similar continuous unitary transformations
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Hole dispersions for antiferromagnetic spin-1/2 two-leg ladders by self-similar continuous unitary transformations

机译:通过自相似连续transformation变换对反铁磁自旋1/2/2腿梯子进行孔扩散

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摘要

The hole-doped antiferromagnetic spin-1/2 two-leg ladder is an important model system for the high-T_c superconductors based on cuprates. Using the technique of self-similar continuous unitary transformations we derive effective Hamiltonians for the charge motion in these ladders. The key advantage of this technique is that it provides effective models explicitly in the thermodynamic limit. A real space restriction of the generator of the transformation allows us to explore the experimentally relevant parameter space. From the effective Hamiltonians we calculate the dispersions for single holes. Further calculations will enable the calculation of the interaction of two holes so that a handle of Cooper pair formation is within reach.
机译:空穴掺杂反铁自旋1/2自旋双腿阶梯是基于铜酸盐的高T_c超导体的重要模型系统。使用自相似连续unit变换的技术,我们得出了这些阶梯中电荷运动的有效哈密顿量。该技术的主要优势在于,它可以在热力学极限内明确提供有效的模型。变换生成器的实际空间限制使我们能够探索实验相关的参数空间。根据有效的哈密顿量,我们计算出单个孔的色散。进一步的计算将使得能够计算两个孔的相互作用,从而使形成库珀对的句柄触手可及。

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