首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Tunable phase control of slow and fast light propagation in a slab doped by four-level quantum dot nanostructure
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Tunable phase control of slow and fast light propagation in a slab doped by four-level quantum dot nanostructure

机译:四级量子点纳米结构掺杂的平板中慢速和快速光传播的可调相位控制

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摘要

Tunable phase control of the slow and fast light propagation through a defect slab medium doped by four-level InGaN/GaN quantum dot structure is demonstrated. By solving the Schrodinger and Poisson's equations self-consistently, a spherical InGaN quantum dot with GaN barrier shell which can interact by terahertz (THz) signal field is designed numerically. It is found that the phase variation of THz signal field imparts the tunability in the group velocity of the transmitted and reflected pulses through a dielectric slab.
机译:演示了通过四层InGaN / GaN量子点结构掺杂的缺陷平板介质缓慢和快速传播光的可调相位控制。通过自洽求解Schrodinger和Poisson方程,数值设计了具有GaN势垒壳的球形InGaN量子点,该势垒壳可以通过太赫兹(THz)信号场相互作用。已经发现,太赫兹信号场的相位变化赋予了通过介电平板的发射和反射脉冲群速度的可调性。

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