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THz filters made by laser ablation of stainless steel and kapton film

Abstract

THz band-pass filters were fabricated by femtosecond-laser ablation of 25-μm-thick micro-foils of stainless steel and Kapton film, which were subsequently metal coated with a ∼70 nm film, closely matching the skin depth at the used THz spectral window. Their spectral performance was tested in transmission and reflection modes at the Australian Synchrotron’s THz beamline. A 25-μm-thick Kapton film performed as a Fabry–Pérot etalon with a free spectral range (FSR) of 119 cm−1, high finesse Fc≈17, and was tuneable over ∼10μm (at ∼5 THz band) with β=30∘ tilt. The structure of the THz beam focal region as extracted by the first mirror (slit) showed a complex dependence of polarisation, wavelength and position across the beam. This is important for polarisation-sensitive measurements (in both transmission and reflection) and requires normalisation at each orientation of linear polarisation. © 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.

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Han, M., Smith, D., Ng, S. H., Vilagosh, Z., Anand, V., Katkus, T., Reklaitis, I., Mu, H., Ryu, M., Morikawa, J., Vongsvivut, J., Appadoo, D., & Juodkazis, S. (2022). THz filters made by laser ablation of stainless steel and kapton film. Micromachines, 13(8), 1170. doi:10.3390/mi13081170

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