Polaronic effects in a Gaussian quantum dot

被引:15
作者
Yanar, Sonay [2 ]
Sevim, Ata [2 ]
Boyacioglu, B. [3 ]
Saglam, Mesude [2 ]
Mukhopadhyaya, Soma [1 ]
Chatterjee, Ashok [1 ]
机构
[1] Bilkent Univ, Dept Phys, TR-06800 Ankara, Turkey
[2] Ankara Univ, Dept Phys, Fac Sci, TR-06100 Tandogan, Turkey
[3] Ankara Univ, Vocat Sch Hlth, TR-06290 Ankara, Turkey
关键词
quantum dot; Gaussian confinement; polaronic effect;
D O I
10.1016/j.spmi.2007.11.006
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The problem of an electron interacting with longitudinal-optical (LO) phonons is investigated in an N-dimensional quantum dot with symmetric Gaussian confinement in all directions using the Rayleigh-Schrodinger perturbation theory, a variant of the canonical transformation method of Lee-Low-Pines, and the sophisticated apparatus of the Feynman-Haken path-integral technique for the entire range of the coupling parameters and the results for N = 2 and N = 3 are obtained as special cases. It is shown that the polaronic effects are quite significant for small dots with deep confining potential well and the parabolic potential is only a poor approximation of the Gaussian confinement. The Feynman-Haken path-integral technique in general gives a good upper bound to the ground state energy for all values of the system parameters and therefore is used as a benchmark for comparison between different methods. It is shown that the perturbation theory yields for the ground state polaron self-energy a simple closed-form analytic expression containing only Gamma functions and in the weak-coupling regime it provides the lowest energy because of an efficient partitioning of the Gaussian potential and the subsequent use of a mean-field kind of treatment. The polarization potential, the polaron radius and the number of virtual phonons in the polaron cloud are obtained using the Lee-Low-Pines-Huybrechts method and their variations with respect to different parameters of the system are discussed. (c) 2007 Elsevier Ltd. All rights reserved.
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页码:208 / 239
页数:32
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