英语翻译本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱.数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单
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英语翻译本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱.数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单
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本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱.数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单缺陷层还是加入双缺陷层,透射峰B都表现出良好的增益效果,但双缺陷层的最大透射率比单缺陷层的最大透射率要大一倍左右.而透射峰A变化不大,无研究意义;在缺陷层虚部为正,加入单缺陷层时,可以看出透射峰A有一个明显的衰减过程,透射峰B变化不大,不予研究.加入双缺陷层时,透射峰A和B都无良好的增益和衰减效果,不予研究.本研究为光子晶体单通道滤波放大器和单通道滤波衰减器提供了一定理论参考.
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英语翻译本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱.数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单
In this paper,the transfer matrix method to study the transmission spectrum of complex permittivity defects symmetric one-dimensional ternary photonic crystal.The numerical results obtained in the first band gap and band gap of the transmission peaks A and B,the imaginary part of the defect layer is negative,whether adding a single defect layer or by adding the two-defect layer,the transmission peak B showed good gain,but the defect layer transmission rate to be about twice as large than the maximum transmission rate of a single defect layer.Transmission peak A changes little significance; imaginary part of the defect layer is positive,by adding a single defect layer,we can see that the transmission peak A has an obvious decay process,changes in the transmission peak B,not research.Join pairs of defect layer,the transmission peaks A and B are a good gain and attenuation effects,not to study.This study provides some theoretical reference attenuator for photonic crystal single-channel filter amplifier and single-channel filter
本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱。数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单缺陷层还是加入双缺陷层,透射峰B都表现出良好的增益效果,但双缺陷层的最大透射率比单缺陷层的最大透射率要大一倍左右。
By applying the Transfer Matrix Method, this article c...
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本文运用传输矩阵法,研究了具有复介电常数缺陷对称一维三元光子晶体的透射谱。数值模拟结果得出,在第一禁带和第二禁带中分别出现了透射峰A和B,在缺陷层虚部为负时,无论加入单缺陷层还是加入双缺陷层,透射峰B都表现出良好的增益效果,但双缺陷层的最大透射率比单缺陷层的最大透射率要大一倍左右。
By applying the Transfer Matrix Method, this article conducts a research on transmission spectrum which has complex dielectric constants symmetric to 1-D three element photonic crystals. According to the results of numerical simulations, transmission peaks A and B appeared in the first band gap and second gap respectively. When the imaginary part of the defect layer showed negative, transmission peak B demonstrated a good beneficial effect regardless of the addition of single defect layer or double defect layer, but the maximum transmission rate of double defect layer was about twice the maximum transmission rate of single defect layer.
而透射峰A变化不大,无研究意义;在缺陷层虚部为正,加入单缺陷层时,可以看出透射峰A有一个明显的衰减过程,透射峰B变化不大,不予研究。加入双缺陷层时,透射峰A和B都无良好的增益和衰减效果,不予研究。本研究为光子晶体单通道滤波放大器和单通道滤波衰减器提供了一定理论参考。
However, there was little change in transmission peak A, so it had no research significance. When the imaginary part of the defect layer was positive, there was an apparent decay process in transmission peak A with the addition of single defect layer, but little change in transmission peak B; so no research on it is intended. When double defect layer was added, there was neither good beneficial effect nor decay effect in transmission peaks A nor B; no research is intended on this as well. This research offers certain theoretical reference to photonic crystal single-channel filter amplifier and attenuator.
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Using the transfer matrix method, studied with complex dielectric constant defect symmetry of 1D Three element photonic crystal transmission spectrum. Numerical simulation results are derived, in the ...
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Using the transfer matrix method, studied with complex dielectric constant defect symmetry of 1D Three element photonic crystal transmission spectrum. Numerical simulation results are derived, in the first band gap and the second gap are respectively appeared transmission peak A and B, in the defect layer is the imaginary part is negative, whether adding a single defect layer or join double defect layers, the peaks of B have demonstrated good gain effect, but the double defect layers maximum transmittance ratio single defect layer maximum transmission to a times. While the transmission peak A changes little, no research significance; in the defect layer the imaginary part is positive, adding a single defect layer, can see the peaks of A has an obvious attenuation, transmission peak B changes little, not to study. Join two defect layer, transmission peak A and B had no good gain and attenuation effect, not to study. The research for the photonic crystal single channel filter amplifier and single channel filter and attenuator provides certain theory reference.
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