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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Control of optical absorption nonlinearity in multi-layers quantum dots and rings
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Control of optical absorption nonlinearity in multi-layers quantum dots and rings

机译:控制多层量子点和环中的光学吸收非线性

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In this paper, we study the effect of the number of wells, inner (R-in) and outer (R-out) quantum ring radiuses, and magnetic field as controlling tools to change the nonlinearity in optical properties of GaN/AlN constant radius multi-layer quantum dots and rings. It is seen that for small R-out and for fixed R-in and R-out, by increasing the number of wells, the nonlinearity increases, while for greater R-out and for fixed R-in and R-out, by increasing the number of wells the nonlinearity first decreases and then increases. For systems with greater R-in, the nonlinearity continually increases by increasing the number of wells. For fixed R-out, the critical well number, in which the nonlinearity changes its behavior, decreases by increasing the inner quantum ring radius R-in. The absorption coefficient does not undertake any blue or red shifts by changing the number of wells. In the systems with more number of wells, the nonlinearity reduces more rapidly by increasing the magnetic field. Finally, by increasing the radius R-out, the nonlinearity increases.
机译:在本文中,我们研究了井,内(R-in)和外部(R输出)量子环半径和磁场的效果,作为控制工具,以改变GaN / AlN恒定半径的光学性质中的非线性多层量子点和环。可以看出,对于小型R-OUT和固定的R-IN和R-OUT,通过增加井的数量,非线性增加,而对于更大的R-OUT和固定的R-IN和R-OUT,通过增加非线性首先降低的井数,然后增加。对于具有更高的R-IN的系统,通过增加井的数量,非线性不断增加。对于固定的R-OUT,通过增加内量子环R-IN,非线性改变其行为的临界井数,其中减小了。通过改变井的数量,吸收系数不会承受任何蓝色或红色偏移。在具有更多数量孔的系统中,通过增加磁场,非线性更快地减少。最后,通过增加半径R-OUT,非线性增加。

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