论文标题

在存在强大的随机电势的情况下,低密度中的顺序参数液滴吸引电子系统

Droplets of the order parameter in a low density attracting electron system in the presence of a strong random potential

论文作者

Kagan, M. Yu., Mazur, E. A.

论文摘要

在存在强大的随机电位V的情况下,在从-v到 +V的范围内均匀分布的二维低密度(N << 1)电子系统具有强大的Hubbard吸引u(W是带宽)。仅考虑在方格上的相邻位点的电子跳,因此要考虑w = 8t。对具有周期性边界条件的24x24个位点的晶格进行了计算。 In the framework of the Bogoliubov - de Gennes approach we observed an appearance of inhomogeneous states of spatially separated Fermi-Bose mixture of Cooper pairs and unpaired electrons with the formation of bosonic droplets of different size in the matrix of the unpaired normal states We observed a decrease in the droplet size (from larger droplets to individual bielectronic pairs) when we decrease the electron density at fixed哈伯德吸引力和随机电位的值。所获得的结果对于构建总相图和对脏金属的准2D(薄)膜中超导,正常金属和局部状态之间相变的性质的理解很重要。从更实际的意义上讲,对于在颗粒超导体中具有很高阻抗的量子电路上实现超导量子的实验也很有趣。

The properties of a two-dimensional low density (n<<1) electron system with strong onsite Hubbard attraction U>W (W is the bandwidth) in the presence of a strong random potential V uniformly distributed in the range from -V to +V are considered. Electronic hoppings only at neighboring sites on the square lattice are taken into account, thus W=8t. The calculations were carried out for a lattice of 24x24 sites with periodic boundary conditions. In the framework of the Bogoliubov - de Gennes approach we observed an appearance of inhomogeneous states of spatially separated Fermi-Bose mixture of Cooper pairs and unpaired electrons with the formation of bosonic droplets of different size in the matrix of the unpaired normal states We observed a decrease in the droplet size (from larger droplets to individual bielectronic pairs) when we decrease the electron density at fixed values of the Hubbard attraction and random potential. The obtained results are important for the construction of the gross phase diagram and understanding of the nature of the phase transition between superconducting, normal metallic and localized states in quasi-2D (thin) film of a dirty metal. In a more practical sense it is interesting also for the experimental implementation of superconducting qubits on quantum circuits with high impedances in granular superconductors.

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