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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Composite fermion theory of correlated electrons in semiconductor quantum dots in high magnetic fields
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Composite fermion theory of correlated electrons in semiconductor quantum dots in high magnetic fields

机译:高磁场下半导体量子点中相关电子的复合费米子理论

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Interacting electrons in a semiconductor quantum dot at strong magnetic fields exhibit a rich set of states, including correlated quantum fluids and crystallites of various symmetries. We develop in this paper a pertur-bative scheme based on the correlated basis functions of the composite-fermion theory, that allows a systematic improvement of the wave functions and the energies for low-lying eigenstates. For a test of the method, we study systems for which exact results are known, and find that practically exact answers are obtained for the ground state wave function, ground state energy, excitation gap, and the pair correlation function. We show how the perturbative scheme helps resolve the subtle physics of competing orders in certain anomalous cases.
机译:半导体量子点中强磁场下的相互作用电子表现出丰富的状态集,包括相关的量子流体和各种对称性的微晶。我们在本文中基于复合费米子理论的相关基函数开发了一种扰动方案,该方案可以系统地改善低层本征态的波函数和能量。为了测试该方法,我们研究了已知准确结果的系统,并发现针对基态波函数,基态能量,激励间隙和对相关函数获得了实际上准确的答案。我们展示了微扰方案如何帮助解决某些异常情况下竞争订单的微妙物理学。

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