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Simulation and Characteristics Improvement of Quantum Dot Slow Light Devices by Geometrical Dimension Alteration

Simulation and Characteristics Improvement of Quantum Dot Slow Light Devices by Geometrical Dimension Alteration
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摘要 In this paper we simulate and analyze a sample of slow light semiconducting device with quantum dot structure based on coherent population oscillation (CPO). The simulation is conducted to enhance the main parameters of slow light device and a method is presented for setting the output specifications of this kind of devices. In this paper, we deal with changing the size of quantum dot to find the ideal size. The simulation results indicate that as the size of quantum dot changes properly (with reducing more than 50 percent of quantum dots both radius and height), then the slope of diagram of the real part of refractive index increases significantly so that the Slow Down Factor (SDF) predicted to be18 times greater. Analysis and simulations based on cylinderical quantum dots structure slow light devices based on exitonic cpo. In this paper we simulate and analyze a sample of slow light semiconducting device with quantum dot structure based on coherent population oscillation (CPO). The simulation is conducted to enhance the main parameters of slow light device and a method is presented for setting the output specifications of this kind of devices. In this paper, we deal with changing the size of quantum dot to find the ideal size. The simulation results indicate that as the size of quantum dot changes properly (with reducing more than 50 percent of quantum dots both radius and height), then the slope of diagram of the real part of refractive index increases significantly so that the Slow Down Factor (SDF) predicted to be18 times greater. Analysis and simulations based on cylinderical quantum dots structure slow light devices based on exitonic cpo.
作者 Bahram Choupanzadeh Hassan Kaatuzian Reza Kohandani Saeed Abdolhosseini Bahram Choupanzadeh;Hassan Kaatuzian;Reza Kohandani;Saeed Abdolhosseini(Photonics Research Lab (PRL), Electrical Engineering Department, Amirkabir University of Technology, Tehran, Iran)
出处 《Optics and Photonics Journal》 2016年第8期114-119,共6页 光学与光子学期刊(英文)
关键词 Slow Light Coherent Population Oscillation Quantum Dots Slow down Factor Slow Light Coherent Population Oscillation Quantum Dots Slow down Factor
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