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Magnetic field effect on the electronic states and the intraband optical absorption spectrum of a laser dressed double quantum dot molecule
Institution:1. National University of Architecture and Construction of Armenia, Teryan 105, Yerevan, 0009, Armenia;2. Istituto Italiano di Tecnologia, Via Eugenio Barsanti, 14, Arnesano LE 73010, Italy;3. Instituto de Alta Investigación, CEDENNA, Universidad de Tarapacá, Casilla 7D, Arica, Chile;1. Department of Applied Physics, School of Science, Hunan  University  of  Technology, Zhuzhou 412007, PR China;2. Hebei Key Lab of Optic-electronic Information and Materials, The College of Physics Science and Technology, Hebei University, Baoding 071002, PR China
Abstract:The simultaneous effects of intense terahertz (THz) laser, a homogeneous magnetic fields, and the modification of the structural parameters on the electronic states, and the intraband optical absorption spectrum in a two-dimensional double quantum dot molecule are theoretically investigated. The crossing and anticrossing are observed in the energy dependence on the magnetic field induction between the third and the fourth energy levels. Additionally, it is shown that an intense THz laser field always shifts the energy spectrum to higher values. The variation of the structural parameters leads to the change of the positions of the energy levels and the anticrossing point. Finally, we have found that the intraband optical absorption spectrum, particularly the absorption intensity and the peak position, can be effectively regulated by an intense THz laser and a magnetic fields, as well as by the variation of the structural parameters of the double quantum dot molecule.
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