Off-axis diffractive optics for compact terahertz detection setup

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Abstract

Medical and many other applications require small-volume setups enabling terahertz imaging. Therefore, we aim to develop a device for the in-reflection examination of the samples. Thus, in this article, we focus on the diffractive elements for efficient redirection and focusing of the THz radiation. A terahertz diffractive optical structure has been designed, optimized, manufactured (using extrusion-based 3D printing) and tested. Two manufacturing methods have been used—direct printing of the structures from PA12, and casting of the paraffin structures out of 3D-printed molds. Also, the limitations of the off-axis focusing have been discussed. To increase the efficiency, an iterative algorithm has been proposed that optimizes off-axis structures to focus the radiation into small focal spots located far from the optical axis, at an angle of more than 30 degrees. Moreover, the application of higher-order kinoform structure design allowed the maintaining of the smallest details of the manufactured optical element, using 3D printing techniques.

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APA

Komorowski, P., Surma, M., Walczakowski, M., Zagrajek, P., & Siemion, A. (2020). Off-axis diffractive optics for compact terahertz detection setup. Applied Sciences (Switzerland), 10(23), 1–10. https://doi.org/10.3390/app10238594

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