Sub-diffraction thin-film sensing with planar terahertz metamaterials

被引:99
|
作者
Withayachumnankul, Withawat [1 ,2 ]
Lin, Hungyen [1 ]
Serita, Kazunori [3 ]
Shah, Charan M. [4 ]
Sriram, Sharath [4 ]
Bhaskaran, Madhu [4 ]
Tonouchi, Masayoshi [3 ]
Fumeaux, Christophe [1 ]
Abbott, Derek [1 ]
机构
[1] Univ Adelaide, Sch Elect & Elect Engn, Adelaide, SA 5005, Australia
[2] King Mongkuts Inst Technol Ladkrabang, Fac Engn, Bangkok 10240, Thailand
[3] Osaka Univ, Inst Laser Engn, Suita, Osaka 5650871, Japan
[4] RMIT Univ, Funct Mat & Microsyst Res Grp, Sch Elect & Comp Engn, Melbourne, Vic 3001, Australia
来源
OPTICS EXPRESS | 2012年 / 20卷 / 03期
基金
澳大利亚研究理事会;
关键词
TIME-DOMAIN SPECTROSCOPY; DAST;
D O I
10.1364/OE.20.003345
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Planar metamaterials consisting of subwavelength resonators have been recently proposed for thin dielectric film sensing in the terahertz frequency range. Although the thickness of the dielectric film can be very small compared with the wavelength, the required area of sensed material is still determined by the diffraction-limited spot size of the terahertz beam excitation. In this article, terahertz near-field sensing is utilized to reduce the spot size. By positioning the metamaterial sensing platform close to the sub-diffraction terahertz source, the number of excited resonators, and hence minimal film area, are significantly reduced. As an additional advantage, a reduction in the number of excited resonators decreases the inter-cell coupling strength, and consequently the resonance Q factor is remarkably increased. The experimental results show that the resonance Q factor is improved by more than a factor of two compared to the far-field measurement. Moreover, for a film with a thickness of lambda/375 the minimal area can be as small as 0.2 lambda x0.2 lambda. The success of this work provides a platform for future metamaterial-based sensors for biomolecular detection. (C) 2012 Optical Society of America
引用
收藏
页码:3345 / 3352
页数:8
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