Liquid Crystal-Based Geometric Phase-Enhanced Platform for Polarization and Wavefront Analysis Techniques with the Short-TeraHertz FEL Oscillator TerRa@BriXSinO

被引:7
作者
Piccirillo, Bruno [1 ,2 ]
Paparo, Domenico [3 ]
Rubano, Andrea [1 ,3 ]
Andreone, Antonello [1 ,2 ]
Conti, Marcello Rossetti [4 ]
Giove, Dario [4 ]
Vicuna-Hernandez, Veronica [1 ]
Koral, Can [1 ,2 ,7 ]
Masullo, Maria Rosaria [2 ]
Mettivier, Giovanni [1 ,2 ]
Opromolla, Michele [5 ]
Papari, Gianpaolo [1 ,2 ]
Passarelli, Andrea [2 ]
Pesce, Giuseppe [1 ]
Petrillo, Vittoria [4 ,5 ]
Piedipalumbo, Ester [1 ,2 ]
Ruijter, Marcel [4 ,6 ]
Russo, Paolo [1 ,3 ]
Serafini, Luca [4 ]
机构
[1] Univ Napoli Federico II, Dept Phys E Pancini, Complesso Univ MSA,Via Cintia, I-80126 Naples, Italy
[2] INFN, Sez Napoli, Complesso Univ MSA,Via Cintia, I-80126 Naples, Italy
[3] CNR ISASI, Inst Appl Sci & Intelligent Syst, Via Campi Flegrei 34, I-80078 Pozzuoli, Italy
[4] Lab Acceleratori & Supercondutt Appl, Sez Milano, Ist Nazl Fis Nucl, Milan, Italy
[5] Univ Milan, Dept Phys, Via Celoria 16, I-20133 Milan, Italy
[6] Univ Roma La Sapienza, Dept Phys, Piazzale Aldo Moro 5, I-00185 Rome, Italy
[7] Univ Basilicata, Dept Sci, Viale Ateneo Lucano 10, I-85100 Potenza, Italy
来源
SYMMETRY-BASEL | 2023年 / 15卷 / 01期
关键词
polarization and wavefront sculpting; optical angular momentum; geometric phase; shearography; SPECTROSCOPY; LIGHT; BIREFRINGENCE; PERFORMANCE; ABERRATIONS; SURFACES; GENESIS; OPTICS; FOCUS;
D O I
10.3390/sym15010103
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In this work, we propose to design a liquid crystal-based modular and extendable platform of cutting-edge optical technologies for studying materials based on the analysis of polarization and wavefront of light in the wavelength range of 10-50 mu m, which is considered to work even in the longer wavelengths range. This platform will be driven by the future THz-FEL source TerRa@BriXSinO that produces high power radiation in THz-range from 6 THz up to 30 THz (Mid-/Far-IR). The lack of optical infrastructures in this range has been tackled by fabricating liquid crystal-based geometric phase components that have been specifically designed for this purpose. This is in order to optimally exploit all the source's potential for maximum accuracy and efficiency in determining polarization- and wavefront-sensitive properties of materials. We present an overview of a few experiments for characterizing bulk inhomogeneities, dielectric anisotropy, surface roughness, cracks, impact damages, and stress and strain effects with special emphasis on non-destructive tests on composite structures. The tools for wavefront shaping developed within our platform will be exploited to add a further degree of freedom, i.e., orbital angular momentum, to nonlinear optics techniques, such as Terahertz Hyper-Raman spectroscopy, for investigating chiral agents' properties.
引用
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页数:27
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