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Magnetoa??optical specifications of Rosena??Morse quantum dot with screw dislocation

DOI:10.1002/qua.26186 期刊:International Journal of Quantum Chemistry 出版年份:2020 更新时间:2025-09-23 15:19:57
摘要: This is the first study to consider a quantum dot with screw dislocation that has Rosen-Morse (RM) confinement potential, generated by a GaAs/GaAlAs heterostructure. An external magnetic field and Aharonov-Bohm (AB) flux field were also applied on RM quantum dot (RMQD) in order to stave the effects of a screw dislocation defect. The combined effect of the screw dislocation defect, the external magnetic field, and AB flux field on the total refractive index changes (TRICs) and the total absorption coefficients (TACs) of RMQD are thus investigated. Cylindrical coordinates are used due to the direction of application of the torsion and the external fields, as well as due to the structure's symmetry. The effective mass approximation and tridiagonal matrix methods are used in order to obtain the subband energy spectra and electronic wave functions of RMQD. The nonlinear optical specifications of RMQD are checked using compact-density-matrix formalism within the framework of the iterative method. Reviews without screw dislocation are also carried out in order to be able to clarify the effects of a screw dislocation defect on the optical properties, and then, both cases are deliberated. This study is the first attempt to analyze the AB flux field for RMQD without screw dislocation. In the present study, the influences of a screw dislocation defect on RMQD's TRICs and TACs are probed by considering different values of the external magnetic field and AB flux field, and the ranges of corresponding parameters on the optimum of the structure are specified. Moreover, the study also elucidates how to rule out the effects of screw dislocation on optical specifications by means of the external fields. Despite a certain screw dislocation, the frequency range is determined where the structure behaves as if it is perfect (namely, without screw dislocation) for its optimum, which in turn is crucial for experimental applications.
作者: Mustafa Kemal Bahar,Fatih Ungan
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Investigating the effects of a screw dislocation defect, an external magnetic field, and an Aharonov-Bohm flux field on the total refractive index changes (TRICs) and the total absorption coefficients (TACs) of a Rosen-Morse quantum dot (RMQD).

The study concludes that the AB flux field can be a functional experimental parameter in the tuning of the optimum of RMQD at a certain TRIC and TAC resonant frequency. The impression of screw dislocation on TRICs and TACs of RMQD is more apparent in feeble regimes of the external magnetic and AB flux fields. The study also determines the frequency range where the structure behaves as if it is perfect despite a certain screw dislocation, which is crucial for experimental applications.

The study is theoretical and does not involve experimental validation. The effects of screw dislocation defect are considered within the external magnetic field and AB flux field, and the study does not explore other types of defects or external influences.

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