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Size shrinking of composite bosons for increasing density in the BCS to Bose-Einstein crossover

机译:复合玻色子的尺寸缩小以增加BCS到Bose-Einstein交叉的密度

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摘要

We consider a system of fermions in the continuum case at zero temperature, in the strong-coupling limit of a short-range attraction when composite bosons form as bound-fermion pairs. We examine the density dependence of the size of the composite bosons at leading order in the density ("dilute limit"), and show on general physical grounds that this size should decrease with increasing density, both in three and two dimensions. We then compare with the analytic zero-temperature mean-field solution, which indeed exhibits the size shrinking of the composite bosons both in three and two dimensions. We argue, nonetheless, that the two-dimensional mean-field solution is not consistent with our general result in the "dilute limit", to the extent that mean field treats the scattering between composite bosons in the Born approximation which is known to break down at low energy in two dimensions.
机译:当复合玻色子形成束缚费米对时,我们考虑在零温度的连续情况下的费米系统,在短距离吸引的强耦合极限中。我们在密度(“稀释极限”)中按领先顺序检查了复合玻色子的尺寸对密度的依赖性,并根据一般物理理由表明,该尺寸应随密度的增加而减小,无论是在三维上还是在二维上。然后,我们将其与解析的零温度平均场解进行比较,该解的确显示了复合玻色子在三维和二维上的尺寸缩小。尽管如此,我们认为二维平均场解与我们在“稀释极限”中的一般结果不一致,在某种程度上,平均场以Born近似对待复合玻色子之间的散射进行了分解。低能量的二维。

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