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Few-electron liquid and solid phases in artificial molecules at high magnetic field

机译:在高磁场下人造分子中的少量电子液体和固相

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Coupled semiconductor quantum dots form artificial molecules where relevant energy scales controlling the interacting ground state can be easily tuned. By applying an external magnetic field it is possible to drive the system from a weak to a strong correlation regime where eventually electrons localize in space in an ordered manner reminiscent of the two-dimensional Wigner crystal. We explore the phase diagram of such "Wigner molecules" analyzing the angular correlation function obtained by the Configuration Interaction solution of the full interacting Hamiltonian. Focus is on the role of tunneling in stabilizing different ground states.
机译:耦合半导体量子点形成人造分子,其中可以容易地调整控制相互作用的接地状态的相关能量尺度。通过施加外部磁场,可以从弱到强的相关区域驱动系统,其中最终以有序方式在空间中定位在空间中,让人想起二维Wigner晶体。我们探讨这种“Wigner分子”的相图分析了通过完整互动哈密顿人的配置交互溶液获得的角度相关函数。重点是隧道在稳定不同地位的作用。

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