The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements

Diffractive optical elements are well known for being not only flat but also lightweight, and are characterised by low attenuation. In different spectral ranges, they provide better efficiency than commonly used refractive lenses. An overview of the recently invented terahertz optical structures bas...

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Bibliographic Details
Main Author: Agnieszka Siemion
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/1/100
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spelling doaj-73ec68ce2e5848c7a732eea7524d2bf02020-12-27T00:00:05ZengMDPI AGSensors1424-82202021-12-012110010010.3390/s21010100The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical ElementsAgnieszka Siemion0Faculty of Physics, Warsaw University of Technology, 75 Koszykowa, 00-662 Warsaw, PolandDiffractive optical elements are well known for being not only flat but also lightweight, and are characterised by low attenuation. In different spectral ranges, they provide better efficiency than commonly used refractive lenses. An overview of the recently invented terahertz optical structures based on diffraction design is presented. The basic concepts of structure design together with various functioning of such elements are described. The methods for structure optimization are analysed and the new approach of using neural network is shown. The paper illustrates the variety of structures created by diffractive design and highlights optimization methods. Each structure has a particular complex transmittance that corresponds to the designed phase map. This precise control over the incident radiation phase changes is limited to the design wavelength. However, there are many ways to overcome this inconvenience allowing for broadband functioning.https://www.mdpi.com/1424-8220/21/1/100diffractive optical elementsterahertz opticsbeam shaping3D printingconvolution approachon-axis and off-axis regime
collection DOAJ
language English
format Article
sources DOAJ
author Agnieszka Siemion
spellingShingle Agnieszka Siemion
The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
Sensors
diffractive optical elements
terahertz optics
beam shaping
3D printing
convolution approach
on-axis and off-axis regime
author_facet Agnieszka Siemion
author_sort Agnieszka Siemion
title The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
title_short The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
title_full The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
title_fullStr The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
title_full_unstemmed The Magic of Optics—An Overview of Recent Advanced Terahertz Diffractive Optical Elements
title_sort magic of optics—an overview of recent advanced terahertz diffractive optical elements
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-12-01
description Diffractive optical elements are well known for being not only flat but also lightweight, and are characterised by low attenuation. In different spectral ranges, they provide better efficiency than commonly used refractive lenses. An overview of the recently invented terahertz optical structures based on diffraction design is presented. The basic concepts of structure design together with various functioning of such elements are described. The methods for structure optimization are analysed and the new approach of using neural network is shown. The paper illustrates the variety of structures created by diffractive design and highlights optimization methods. Each structure has a particular complex transmittance that corresponds to the designed phase map. This precise control over the incident radiation phase changes is limited to the design wavelength. However, there are many ways to overcome this inconvenience allowing for broadband functioning.
topic diffractive optical elements
terahertz optics
beam shaping
3D printing
convolution approach
on-axis and off-axis regime
url https://www.mdpi.com/1424-8220/21/1/100
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