Measurement of Chromatic Birefringence Dispersion of Phase Plates Written in Glasses by Femtosecond Pulses
The direct femtosecond laser writing of phase optical elements in glasses represents a promising technique for controlling light beams and developing new functional devices that operate on the birefringence effect. In this study, phase plates were written in the volume of silica and nanoporous glass...
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Published in | Glass and ceramics Vol. 81; no. 5-6; pp. 225 - 229 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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01.09.2024
Springer Nature B.V |
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Abstract | The direct femtosecond laser writing of phase optical elements in glasses represents a promising technique for controlling light beams and developing new functional devices that operate on the birefringence effect. In this study, phase plates were written in the volume of silica and nanoporous glasses using a laser beam. For the first time, the chromatic dispersion curves of birefringence were measured for such plates using multiple methods. This allows the retardance of birefringent elements fabricated by direct laser writing to be estimated, even when using commercial birefringence analysis systems operating at a specific wavelength. |
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AbstractList | The direct femtosecond laser writing of phase optical elements in glasses represents a promising technique for controlling light beams and developing new functional devices that operate on the birefringence effect. In this study, phase plates were written in the volume of silica and nanoporous glasses using a laser beam. For the first time, the chromatic dispersion curves of birefringence were measured for such plates using multiple methods. This allows the retardance of birefringent elements fabricated by direct laser writing to be estimated, even when using commercial birefringence analysis systems operating at a specific wavelength. |
Author | Mikhailov, Yu. V. Lipateva, T. O. Ivanov, P. I. Lotarev, S. V. Lipatiev, A. S. Sigaev, V. N. Fedotov, S. S. Stopkin, S. I. |
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Cites_doi | 10.1103/PhysRevLett.91.247405 10.1143/JJAP.44.L687 10.1088/2040-8978/12/3/035204 10.1364/OL.43.000851 10.1063/1.2185587 10.1063/1.4941427 10.1002/lpor.202000167 10.1186/s41476-016-0023-7 10.1364/OME.463151 10.1016/j.optlaseng.2010.02.001 10.1063/1.4984066 10.1364/OME.3.001161 10.1016/S0030-4018(99)00091-7 |
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Keywords | direct laser writing nanoporous glass silica glass birefringence dispersion phase plate |
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References | Wang, Zheng, Chu (CR2) 2010; 48 Richter (CR9) 2013; 3 CR15 Bricchi, Kazansky (CR7) 2006; 88 Fedotov, Okhrimchuk, Lipatiev (CR10) 2018; 43 CR12 Ghosh (CR14) 1999; 163 Piacentini, Vogl, Corrielli (CR1) 2021; 15 Shimotsuma, Kazansky, Qiu, Hirao (CR13) 2003; 91 Lei, Wang, Shayeganrad, Kazansky (CR5) 2022; 12 Messaadi, Sánchez-López, García-Martínez (CR16) 2016; 12 Tamaki, Watanabe, Nishii, Itoh (CR3) 2005; 44 Malinauskas, Gilbergs, Žukauskas (CR4) 2010; 12 Drevinskas, Kazansky (CR6) 2017; 2 Landsberg (CR11) 2010 Fedotov, Drevinskas, Lotarev (CR8) 2016; 108 Y Lei (687_CR5) 2022; 12 XC Wang (687_CR2) 2010; 48 E Bricchi (687_CR7) 2006; 88 Y Shimotsuma (687_CR13) 2003; 91 R Drevinskas (687_CR6) 2017; 2 687_CR12 S Piacentini (687_CR1) 2021; 15 687_CR15 G Ghosh (687_CR14) 1999; 163 A Messaadi (687_CR16) 2016; 12 SS Fedotov (687_CR10) 2018; 43 GS Landsberg (687_CR11) 2010 SS Fedotov (687_CR8) 2016; 108 T Tamaki (687_CR3) 2005; 44 S Richter (687_CR9) 2013; 3 M Malinauskas (687_CR4) 2010; 12 |
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SubjectTerms | Birefringence Ceramics Characterization and Evaluation of Materials Chemistry and Materials Science Composites Direct laser writing Dispersion curve analysis Femtosecond pulsed lasers Femtosecond pulses Glass Laser beams Light beams Materials Science Natural Materials Optical components Phase plates Silica glass |
Title | Measurement of Chromatic Birefringence Dispersion of Phase Plates Written in Glasses by Femtosecond Pulses |
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