• The dispersion curves showed that plasma photonics crystal has the structure of photonic energy band and energy gap.

    得到的色散曲线看到等离子体光子晶体具有光子能带能隙结构

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  • The metal photonic band gap structure has potentialities in the areas of high-energy accelerators, microwave vacuum electron devices, and terahertz radiation sources etc.

    金属光子结构高能加速器微波真空电子器件太赫兹波源等方面具有重要应用前景。

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  • This structure can form a wave-guide in photon crystals and light can propagate in it with different selected frequency in photonic band gap with low loss.

    结构光子晶体中构成光波导使光子禁带不同被选择的缺陷态频率的光子极低损耗通过。

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  • The photonic band-gap of triangle structure photonic band-gap PhotonicCrystal Fiber (PBG-PCF) is computed by FPWM.

    利用全矢量平面波法计算三角结构光子型光子晶体光纤的带隙分布。

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  • Photonic band gap structure of photonic crystals indicates its primary Property , which is the base of design of application.

    光子晶体结构光子晶体重要特性之一,也是光子晶体应用开发基础

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  • In chapter two, the dispersion of a type of slow-wave structure and the photonic crystal band gap structures are discussed in this chapter.

    第三先介绍一种新型全金属结构具有光子晶体结构的慢波结构了分析。

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  • In its random structure the optical processes will be enhanced by localization or random walking of coherent light; while photonic band-gap appears in its regular structure.

    如无光学波长结构光子局域随机行走增强,有规亚光学波长结构的光子带隙。

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  • So, the study on photonic band gap structure is an important part of basic research on photonic crystals.

    因此,对于光子晶体及其光学传输特性的研究光子晶体进行基础性研究的重要内容

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  • By comparison of injection wave type, it can be concluded that te type wave is easier to be limited to transmit in the structure of the band gap photonic crystal fiber which designed in this article.

    通过注入类型比较可以得出结论,TE类型的波易于限制本文所设计的这种结构型光子晶体光纤中进行传播

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  • A novel photonic band gap (PBG) structure is presented in this paper.

    提出一种新型微带光子带隙结构

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  • The waveguide is preferably in the form of an optical fiber having a cladding that contains a photonic band gap structure which in turn envelopes a light conducting, hollow core portion.

    波导采用形式最好具有包含光子结构而 该结构又包住传导的空芯部分的光纤

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  • First, we propose and analyze a novel 3-dimensional photonic-crystal which is capable of further exploring the design flexibility of any band-gap structure.

    论文首先提出具有更高灵活性光子晶体结构,分析能带结构和缺陷模特性。

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  • The results show that the structure possesses a type of photonic band gap originating from total internal reflection (TIR).

    结果表明结构具有源于反射光子

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  • The results show that the structure possesses a type of photonic band gap originating from total internal reflection (TIR).

    结果表明结构具有源于反射光子

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