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From granules to bulk superconductors using Richardson-Gaudin equations

机译:使用Richardson-Gaudin方程从颗粒到块状超导体

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We provide a compact expression of the ground-state energy of N-Cooper pairs valid from small to large sample volumes, as checked by numerically solving Richardson-Gaudin equations which give the exact eigenstates of BCS superconductors. This expression contains a contribution linear in the potential amplitude, dominant for small samples, and an exponential contribution dominant when the number of states available for pairing gets larger than a material-dependent threshold independent from sample size. These "available states" are the states feeling the BCS potential, reduced by the Pauli exclusion principle through a "moth-eaten effect" which comes from the composite boson nature of Cooper pairs. This work also presents an elegant derivation of the N-Cooper pair energy obtained recently, which makes use of the roots of the degree-N Hermite polynomial.
机译:我们提供了从小样本量到大样本量有效的N-库珀对的基态能量的紧凑表达式,通过数值求解Richardson-Gaudin方程进行了检验,该方程给出了BCS超导体的精确本征态。该表达式包含一个对电位振幅呈线性关系的贡献,对于小样本来说是主要的,而当可用于配对的状态数变得大于与材料无关的,独立于样本大小的阈值时,该贡献占主导。这些“可用状态”是感觉到BCS电位的状态,由于库珀对的复合玻色子性质而产生的“蛀虫效应”,通过保利排斥原理降低了状态。这项工作还提出了对最近获得的N-Cooper对能量的精确推导,它利用了N次Hermite多项式的根。

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