标题: 光子晶体负折射现象研究
Negative Index of Refraction Phenomenon in Photonic Crystal
作者: 林永伦
Lin Yung-Lun
谢文峰
Wen-Feng Hsieh
光电工程学系
关键字: 光子晶体;负折射率;photonic cyrstal;negative refraction
公开日期: 2002
摘要: 在微波频段的实验量测中,我们观察发现电磁波透射光子晶体棱镜会有负责射偏折的现像,其偏折可直接以司乃尔定律定义出折射率。此外在研究当中我们并以时域有限差分演算法来进一步验证负偏折现象。在理论分析当中,发现群折射率与相折射率的乘积值才具有物理意义。藉由k.p理论分析偏折现象时,可以获知群折射率与相折射率的乘积与微波段实验负折射偏折结果相谋合。如此一来我们可以利用量测光透射光子晶体的偏折状态来建构光子能带结构。并且根据k.p理论,电磁波在光子晶体中的群速度可以定义为准粒子的有效质量与动量的比值且电磁波在光子晶体当中传播的行为就像具有质量的准粒子。
We have observed the electromagnetic waves undergo negative refraction in a two-dimensional photonic crystal prism in microwave frequency regime. By measuring the refraction angles of EM waves propagating through a PCP, and applying the Snell’s law to the exit interface of PC and air, we deduced the negative refractive indices which are consistent with the simulated results by using the finite-difference time-domain (FDTD) method. We show that only the product of phase index and group index has the physical meaning. The calculated product of phase index and group index derived from the extended k p theory fit reasonably well with the experimental data. Thus, it is possible to reconstruct the photonic band structure from measurement of refraction angles for light propagation through the PC. And, according to the extended k p theory, the group velocity of EM waves in PC can be defined as the ratio of momentum to relativistic effect mass of a quasi-particle. The EM wave propagating in PC behaves like a massive quasi-particle.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT910614031
http://hdl.handle.net/11536/71114
显示于类别:Thesis


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