Donor in cylindrical quantum well wire under the action of an applied magnetic field
In this paper we present a calculation of the binding energy of a donor impurity in a cylindrical GaAs-Ga 0.6Al 0.4As quantum well wire (QWW) as a function of an applied magnetic field for different wire radii and different positions of the donor. The model considers an infinite length QWW with a ca...
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Published in | Physica. E, Low-dimensional systems & nanostructures Vol. 42; no. 9; pp. 2436 - 2440 |
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Main Author | |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.07.2010
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Abstract | In this paper we present a calculation of the binding energy of a donor impurity in a cylindrical GaAs-Ga
0.6Al
0.4As quantum well wire (QWW) as a function of an applied magnetic field for different wire radii and different positions of the donor. The model considers an infinite length QWW with a carrier that is confined laterally by a parabolic potential and the presence of a uniform magnetic field applied parallel to the wire axis. The 1s-like impurity state is considered using the effective-mass approximation within the variational approach. We found that for a given wire radius the binding energy of the impurity increases with the magnetic field and that for a given magnetic field value it decreases with wire radius. Our results are in good agreement with previous theoretical reports. |
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AbstractList | In this paper we present a calculation of the binding energy of a donor impurity in a cylindrical GaAs-Ga
0.6Al
0.4As quantum well wire (QWW) as a function of an applied magnetic field for different wire radii and different positions of the donor. The model considers an infinite length QWW with a carrier that is confined laterally by a parabolic potential and the presence of a uniform magnetic field applied parallel to the wire axis. The 1s-like impurity state is considered using the effective-mass approximation within the variational approach. We found that for a given wire radius the binding energy of the impurity increases with the magnetic field and that for a given magnetic field value it decreases with wire radius. Our results are in good agreement with previous theoretical reports. |
Author | Villamil, Pablo |
Author_xml | – sequence: 1 givenname: Pablo surname: Villamil fullname: Villamil, Pablo email: pabloe1954@yahoo.es organization: Departamento de Matemáticas y Física, Universidad de Sucre, A.A. 406, Sincelejo, Colombia |
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References | Huard (bib6) 2004; 131 Shi, Peeters, Devreese (bib9) 1995; 51 Latgé (bib21) 1996; 53 Mikhailov (bib13) 2003; 67 Huang Michael (bib1) 2001; 292 Shi (bib20) 1991; 44 Villamil, Porras-Montenegro (bib15) 1998; 10 Zaratiegui (bib12) 2002; 66 Thelander (bib3) 2004; 131 Elagoz, Amca, Kutlu, Sokmen (bib22) 2008; 44 Maura (bib7) 2004; 131 Holmes (bib14) 1992; 69 Peeters, Schweigert (bib10) 1996; 53 Lien Nguyen (bib18) 2000; 292 Urban (bib4) 2004; 131 Bayer (bib5) 2000; 7 Villamil, Porras-Montenegro (bib16) 1999; 59 Graham (bib2) 2004; 131 Peeters (bib19) 1990; 42 Mikhailov (bib8) 2002; 234 Riva (bib17) 2004; 22 Branis, Li, Bajaj (bib24) 1993; 47 Slater (bib25) 1960 Peter (bib23) 2008; 147 Riva, Schweigert, Peeters (bib11) 1998; 57 Latgé (10.1016/j.physe.2010.06.001_bib21) 1996; 53 Riva (10.1016/j.physe.2010.06.001_bib17) 2004; 22 Slater (10.1016/j.physe.2010.06.001_bib25) 1960 Zaratiegui (10.1016/j.physe.2010.06.001_bib12) 2002; 66 Urban (10.1016/j.physe.2010.06.001_bib4) 2004; 131 Huard (10.1016/j.physe.2010.06.001_bib6) 2004; 131 Peeters (10.1016/j.physe.2010.06.001_bib10) 1996; 53 Lien Nguyen (10.1016/j.physe.2010.06.001_bib18) 2000; 292 Shi (10.1016/j.physe.2010.06.001_bib9) 1995; 51 Villamil (10.1016/j.physe.2010.06.001_bib15) 1998; 10 Villamil (10.1016/j.physe.2010.06.001_bib16) 1999; 59 Shi (10.1016/j.physe.2010.06.001_bib20) 1991; 44 Peeters (10.1016/j.physe.2010.06.001_bib19) 1990; 42 Thelander (10.1016/j.physe.2010.06.001_bib3) 2004; 131 Mikhailov (10.1016/j.physe.2010.06.001_bib8) 2002; 234 Peter (10.1016/j.physe.2010.06.001_bib23) 2008; 147 Huang Michael (10.1016/j.physe.2010.06.001_bib1) 2001; 292 Graham (10.1016/j.physe.2010.06.001_bib2) 2004; 131 Mikhailov (10.1016/j.physe.2010.06.001_bib13) 2003; 67 Branis (10.1016/j.physe.2010.06.001_bib24) 1993; 47 Maura (10.1016/j.physe.2010.06.001_bib7) 2004; 131 Riva (10.1016/j.physe.2010.06.001_bib11) 1998; 57 Holmes (10.1016/j.physe.2010.06.001_bib14) 1992; 69 Elagoz (10.1016/j.physe.2010.06.001_bib22) 2008; 44 Bayer (10.1016/j.physe.2010.06.001_bib5) 2000; 7 |
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0.6Al
0.4As quantum well wire (QWW) as a function of... |
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Title | Donor in cylindrical quantum well wire under the action of an applied magnetic field |
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