Electromagnetically induced grating in azimuthal dependent three-level quantum dot system

被引:0
|
作者
Aslla-Quispe, A. P. [1 ]
Camacho-Orbegoso, E. W. [2 ]
Farfan-Latorre, M. [3 ]
Lavilla-Condori, W. G. [4 ]
Madueno-Portilla, R. [5 ]
Rodas-Guizado, E. [6 ]
Carrion-Abollaneda, R. [7 ]
Lujan-Perez, D. [8 ]
Huaman-Romani, Y. L. [4 ]
Garrido-Arismendis, J. J. [9 ]
机构
[1] Natl Intercultural Univ Quillabamba, Acad Dept Civil Engn & Basic Sci, Quillabamba Cusco, Peru
[2] Univ Tecnol Peru, Fac Ingn, Lima, Peru
[3] Natl Amazonian Univ Madre De Dios, Acad Dept Educ, Puerto Maldonado, Peru
[4] Natl Amazonian Univ Madre De Dios, Acad Dept Basic Sci, Puerto Maldonado, Peru
[5] Natl Amazonian Univ Madre De Dios, Acad Dept Med Vet Zootech, Puerto Maldonado, Peru
[6] Natl Jose Maria Arguedas Univ Andahuaylas, Acad Dept Basic Sci, Apurimac, Peru
[7] Univ Nacl Jose Maria Arguedas, Dept Acad Ingn & Tecnol Informat, Andahuaylas, Peru
[8] Natl Univ Puno Altiplano, Acad Dept Grad Sch, Puno, Peru
[9] Natl Frontier Univ, Acad Dept Food Ind Engn, Sullana, Peru
关键词
orbital angular momentum; relative phase; asymmetric diffraction pattern; ORBITAL ANGULAR-MOMENTUM; GIANT KERR NONLINEARITY; BISTABILITY; MODULATION; LIGHT;
D O I
10.1088/1555-6611/acd373
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The Fraunhofer diffraction pattern in a three-level quantum dot nanostructure is examined. A probe light, a two-dimensional standing wave field, and a weak signal light are the three optical laser fields that the graphene quantum dot interacts with them. The Fraunhofer diffraction pattern of the probe transmitted light has been addressed under two different coupling situations, including when the weak signal light into an optical vortex beam and a plane wave. The Fraunhofer diffraction pattern becomes symmetric for plane wave coupling light, and the diffracted light can be adjusted by the relative phase between applied lights. However, using the orbital angular momentum of light, it is possible to obtain an asymmetric diffraction pattern for optical light. It has been discovered that in both instances, phase modulation of the probe light's transmission function allows the probe energy to move from zero order to higher orders.
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页数:8
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