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Superfluidity of 'dirty' indirect excitons in coupled quantum wells

机译:耦合量子阱中“脏”间接激子的超流动性

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The theory of what happens to a superfluid in a random field, known as the 'dirty boson' problem, directly relates to a real experimental system presently under study by several groups, namely excitons in coupled semiconductor quantum wells. We consider the case of bosons in two dimensions in a random field, when the random field can be large compared to the repulsive exciton-exciton interaction energy, but is small compared to the exciton binding energy. The interaction between excitons is taken into account in the ladder approximation. The coherent potential approximation allows us to derive the exciton Green's function for a wide range of the random field strength, and in the weak-scattering limit CPA results in the second-order Born approximation. For quasi-two-dimensional excitonic systems, the density of the superfluid component and the Kosterlitz-Thouless temperature of the superfluid phase transition are obtained, and are found to decrease as the random field increases. (c) 2004 Elsevier Ltd. All rights reserved.
机译:关于超流体在随机场中发生什么的理论,即所谓的“脏玻色子”问题,直接涉及目前由几组研究的真实实验系统,即耦合半导体量子阱中的激子。我们考虑在随机场中二维玻色子的情况,当随机场与排斥激子-激子相互作用能相比较大时,而与激子结合能相比则很小。梯形近似中考虑了激子之间的相互作用。相干势近似使我们能够在很宽的随机场强度范围内导出激子格林函数,并且在弱散射极限中,CPA导致二阶Born近似。对于准二维激子系统,获得了超流体组分的密度和超流体相变的Kosterlitz-Thouless温度,并发现其随随机场的增加而降低。 (c)2004 Elsevier Ltd.保留所有权利。

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