Photonic crystals are a new kind of materials with photonic band gap.
光子晶体是一种具有光子带隙的新型功能材料.
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This article mainly studies on the optical transmission of one - dimensional photonic crystals.
文章主要研究光在一 维 光子晶体中的传输特性.
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In this dissertation, two optoelectronic devices based on photonic crystals are presented.
在本论文中, 我们报告两种利用光子晶体所制造的光电元件.
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The fundamental conception development and prospective application of photonic crystals are introduced.
介绍了光子晶体的基本概念,阐述了光子晶体的最新进展以及主要特性和应用.
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A straightforward proof of the Bloch theorem for one - dimensional photonic crystals is presented.
本文介绍在微机上研制的一 维 盆地模拟系统.
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In this thesis, the negative refraction phenomena in two - dimensional ( 2 D ) photonic crystals are studied.
本论文主要研究的是光子晶体中 负折射 现象.
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For 2 D photonic crystals with Raman nonlinearity, we can find the thrice effect.
另外,在材料具有喇曼非线性的二维光子晶体中, 观察到了入射光三倍频的成分.
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An experimental simulation method is introduced to the investigation of photonic crystals'transparency rate.
采用宏观实验模拟的方法,研究了光子晶体的透过率问题.
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The local defect modes is investigated in photonic crystals with negative refractive index structural defects.
研究了含有负折射率缺陷的光子晶体中的局域缺陷模.
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We have studied the dispersion and optical transmission spectra of the dual - periodic one - dimensional photonic crystals.
计算了厚度调制的双周期一 维 光子晶体的色散关系和透射谱.
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Energy band structures of different magnetic dielectric photonic crystals ( CD ) are calculated by finite - difference time - domain ( FDTD ) method.
利用时域有限差分(FDTD ) 法,计算了磁介质材料光子晶体 ( PC ) 的能带结构.结果表明,磁性散射也能形成光子禁带.
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The expansion method is introduced gap for two - dimensional solid photonic crystals with square lattices.
采用平面波算法研究了二 维 正方点阵声子晶体的禁带结构.
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The result, since wavelength determines colour, is that photonic crystals reflect coloured light.
由于波长决定颜色, 结果则是光子晶体反射出了五光十色的光芒.
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The transmission property and localization of free dodecagonal quasiperiodic photonic crystals ( QPC ) are studied.
本文利用数值模拟和实验的方法研究了准晶 光子晶体 的传输特性和局域特性.
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Energy hand structures of different magnetic dielectric photonic crystals arc calculated by finite - difference time - domain ( FDTD ) method.
利用时域有限差分 ( FDTD ) 法,计算了磁介质材料光子晶体(PC)的能带结构.
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