标题: 包含液态晶体之兆赫波段光子晶体之设计制作及光学性质研究
Study on Fabrication and Optical Properties of Photonic Crystals Infiltrated with Liquid Crystals in Terahertz Region
作者: 赵如苹
PAN RU-PIN
国立交通大学电子物理学系(所)
关键字: 可调式光子晶体;液态晶体;兆赫波;金属孔洞阵列;奈米压印;Tunable;photonic crystals;liquid crystals;terahertz wave;metallic hole arrays;and nano-inprint.
公开日期: 2009
摘要: 光子晶体及金属孔洞阵列在可见光波段之研究是一个非常热门的课题。而兆赫波光谱技术为一新颖的研究,但可用于此波段的光学元件相当缺乏,我们将利用光子晶体及二维金属孔洞阵列之穿透特性,设计可于室温下操作之波导、滤波器等元件,我们也将加入液态晶体来使这些元件具有可调变的特性。由于光子晶体尺度必须与电磁波长相匹配,在可见光波段下之光子晶体及金属孔洞阵列在制作上相当困难。在兆赫波段,因其波长在次毫米范围,此度叫大,所以制作反而较为容易。目前我们已经测量了此波段下包含液晶(5CB)之二维金属孔洞阵列的穿透频谱。其结果显示,设计及制作兆赫波段下之液晶光子晶体元件是可行的。
鉴于包含液晶之金属孔洞阵列滤波应用的可行性,我们进一步设计并制作不同维度的光子晶体结构。研究不同的配向技术使液晶能沿着特定方向排列于光子晶体内部。研究液态晶体于不同外场(如电场及磁场)下对光子晶体之兆赫波传播性质的影响。进一步利用液态晶体之介电异方性设计可调变之兆赫波导及滤波器。
Researches about photonic crystals (PCs) and metallic hole arrays (MHAs) in the visible range has been a field attracting many researchers attention. On the other hand, Terahertz (THz) wave is a new field with prompt potential for medical applications. The THz spectroscopic technology is a novel research but devices used in this frequency range are very rare compared to visible light. It is difficult to fabricate PCs and MHAs for the visible range, because the dimensions of these devices have to be comparable to the wavelength of light. Since the wavelength for THz waves are millimeters and sub-millimeters, THz PCs and MHAs have larger dimension and hence are much easier to fabricate. We will design the waveguides and filters by utilizing the properties of PCs and MHAs, and these devices could be used at room temperature. Immersing with liquid crystals makes these devices even more versatile. Previously, we have measured the power spectrum of liquid crystal (5CB) with 2D-MHAs in THz range. The measured results show that it is feasible to combine the liquid crystals and PC/MHA to design tunable THz devices.
Base on the preliminary results about the THz filter composed of the liquid-crystal-infiltrated MHAs, we further design and fabricate the PCs with different dimensions. To align the liquid crystal with the PCs and MHAs, the traditional alignment method by rubbing becomes impossible. In this work, we also study the new liquid crystal alignment method. Particularly, the ion-beam bombardment method will be studied.
Influence of liquid crystals under different external field (such as electric and magnetic field) on the propagating properties of transmitted THz wave in PCs will be studied. Furthermore, the THz waveguides and filters are also designed using the intrinsic dielectric anisotropy of liquid crystals.
官方说明文件#: NSC96-2221-E009-131-MY3
URI: http://hdl.handle.net/11536/101266
https://www.grb.gov.tw/search/planDetail?id=1730930&docId=296171
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