Chin. Phys. Lett.  1999, Vol. 16 Issue (1): 53-55    DOI:
Original Articles |
Ground-State Transitions in Two Vertically Coupled Single Electron Quantum Dots
XIE Wen-fang
Department of Physics, Guangzhou Normal University, Guangzhou 510400
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XIE Wen-fang 1999 Chin. Phys. Lett. 16 53-55
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Abstract Exact results for the two vertically coupled two-dimensional single electron quantum dots are obtained as a function of magnetic field. The ground-state transition is investigated and the effect of the distance between a double-layer dot on the Coulomb interaction is studied. Our results show that when the inter-dot distance increases, a higher magnetic field is needed to induce ground-state transitions and that for sufficiently large distance no transitions occur. Hence, the short-ranged component of Coulomb interaction is important whether the ground-state transition appears in double-layer quantum dots.
Keywords: 73.20.Dx      73.20.Mf      73.40.Kp     
Published: 01 January 1999
PACS:  73.20.Dx  
  73.20.Mf (Collective excitations (including excitons, polarons, plasmons and other charge-density excitations))  
  73.40.Kp (III-V semiconductor-to-semiconductor contacts, p-n junctions, and heterojunctions)  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y1999/V16/I1/053
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