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Kurum makalesi · Scopus üzerinden alınan atıf kaydı

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Atıf Alan Yayın
Linear and nonlinear intersubband optical absorptions in an asymmetric rectangular quantum well
European Physical Journal B Cilt 55 ss. 283-288
Scopus Toplam 232 atıf DOI
The linear and nonlinear intersubband optical absorptions in Al xlGa 1-xlAs/GaAs/Al xr Ga 1-xrAs asymmetric rectangular quantum well are studied within the framework of the density matrix formalism. We have calculated the electron energy levels and the envelope wave functions using the effective mass approach. In addition, we have obtained an expression for saturation intensity. It is shown that the parameters such as asymmetry and width of potential well not only shift the peak positions in absorption spectrum but also considerably modify their height. These results suggest that the absorption process can be easily controlled by the structure parameters of an asymmetric rectangular quantum well. Also, the incident optical intensity has a great effect on the total absorption spectrum. We have seen that the absorption peak is reduced by half when the optical intensity is approximately 0.8 MW/cm 2 for well width L=90 Å and β=0.5. Moreover, it is seen that the saturation intensity is quite sensitive to the structure parameters of an asymmetric rectangular quantum well. Thus, the results presented here can be useful for electro-optical modulators and photodetectors in the infrared region. © EDP Sciences/Società Italiana di Fisica/Springer-Verlag 2007.
Atıf Kaynağı
Atıf Yapan Yayın
Nonlinear optical rectification and optical absorption in GaAsGa 1-xAlxAs double quantum wells under applied electric and magnetic fields
Physica E Low Dimensional Systems and Nanostructures Cilt 43 ss. 1405-1410
Scopus Havuzumuzda 54 atıf almış
In this work are studied the electron-related nonlinear optical absorption and nonlinear optical rectification in GaAsGa1-xAlxAs asymmetric double quantum wells under applied electric and magnetic field. The density matrix formalism and the effective mass and parabolic band approximations have been considered. The main findings show that in asymmetrical heterostructures under an appropriate strength of the electric field it is possible that the optical rectification is zero and in such circumstances the optical absorption has a relative maximum; similar behavior is observed in these optical properties as a function of the length of one of the two quantum wells and without applied electric field. Also, the results suggest that in asymmetric double quantum wells the optical absorption is a nonmonotonic increasing (decreasing) function of the applied magnetic field (width of the central barrier) and that particularly when the optical absorption has an inflection point the optical absorption has an absolute maximum. Finally we found that the resonant peaks in the nonlinear optical rectification and nonlinear optical absorption can be red-shifted to low photon energies or blue-shifted to large photon energies depending on the energy difference of the two lowest confined states in the heterostructure, and this condition can be controlled by changes in the external proofs such us applied electric and magnetic fields or by changes in the structural dimensions of the coupled quantum well system. © 2011 Elsevier B.V. All rights reserved.
Atıf Yapan Makale Bilgileri
Kurumlar (2)
Selçuk Üniversitesi Selçuklu, Turkey
Universidad de Antioquia Medellin, Colombia