Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • 2017 European Conference on Lasers and Electro-Optics and European Quantum Electronics Conference
  • (Optica Publishing Group, 2017),
  • paper CC_5_4

Thick THz Metamaterials fabricated by 3D printer for THz High-Pass Filter Application

Not Accessible

Your library or personal account may give you access

Abstract

Terahertz (THz) technologies have been gaining a great deal of interests, but current THz optics is still facing various challenges in their functionality and performance. Metamaterials, which are artificial structures consisting of many periodical units smaller than the wavelength of electromagnetic waves, are attracting attention as a new tool for the development of THz optics because the optical properties of metamaterials can be controlled by appropriate structures. However, lithography techniques conventionally used to make metamaterials can only make quasi-two-dimensional thin-film structures with thicknesses much smaller than the wavelength of THz waves (typically several hundred micrometer). This is a serious limiting factor, as the three dimensionality of the structure is important to extend the functionality of metamaterials as optical components [1]. Recently, the 3D printer has gained attention as a means to fabricate 3D metamaterial because there is, in principle, no limitation to achievable thickness [2]. However, the typical resolution necessary to make THz metamaterial is smaller than several hundred micrometers, and this is still challenging for conventional metal 3D printers. In order to overcome this difficulty, we have developed a new 3D printing technology which can make metallic structures with sufficient resolution for making THz metamaterial. As a demonstration to show the advantage of our technology, we made a “thick” THz metamaterial with 1-mm thickness, which is larger than the typical THz wavelength. This device works as high-pass filter with a sharp cut-off frequency because of the thick characteristic. This presented 3D printing technology, enables to make 3D THz metamaterials without thicknesses limitation, and should bring innovation to the field of development of THz optics.

© 2017 IEEE

PDF Article
More Like This
Fabrication and analysis of 3D asymmetric pillar-shaped metamaterial for low terahertz (THz) application

S. Papamakarios, O. Tsilipakos, A. Koulouklidis, S. Tzortzakis, M. Kafesaki, and M. Farsari
cm_11_4 The European Conference on Lasers and Electro-Optics (CLEO/Europe) 2023

Open Source 3-D Printers: An Appropriate Technology for Building Low Cost Optics Labs for the Developing Communities

J. Gwamuri and Joshua M. Pearce
104522S Education and Training in Optics and Photonics (ETOP) 2017

Application of wavefront printer-from static 3D visualization to projection-type holographic display-

Koki Wakunami
M4B.1 Digital Holography and Three-Dimensional Imaging (DH) 2017

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.