Standard

Comparative study of holographic, interferometric, and other tools for vortex beam analysis. / Gavril'eva, K. N.; Mermoul, A.; Sevryugin, A. A.; Shubenkova, E. V.; Touil, M.; Tursunov, I. M.; Venediktov, V. Yu.

Holography, Diffractive Optics, and Applications VIII. ред. / Changhe Zhou; Yunlong Sheng; Chongxiu Yu; Changhe Zhou. SPIE, 2018. 108180X (Proceedings of SPIE - The International Society for Optical Engineering; Том 10818).

Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференций › статья в сборнике материалов конференции › научная

Harvard

Gavril'eva, KN, Mermoul, A, Sevryugin, AA, Shubenkova, EV, Touil, M, Tursunov, IM & Venediktov, VY 2018, Comparative study of holographic, interferometric, and other tools for vortex beam analysis. в C Zhou, Y Sheng, C Yu & C Zhou (ред.), Holography, Diffractive Optics, and Applications VIII., 108180X, Proceedings of SPIE - The International Society for Optical Engineering, Том. 10818, SPIE, Holography, Diffractive Optics, and Applications VIII 2018, Beijing, Китай, 11/10/18. https://doi.org/10.1117/12.2500490

APA

Gavril'eva, K. N., Mermoul, A., Sevryugin, A. A., Shubenkova, E. V., Touil, M., Tursunov, I. M., & Venediktov, V. Y. (2018). Comparative study of holographic, interferometric, and other tools for vortex beam analysis. в C. Zhou, Y. Sheng, C. Yu, & C. Zhou (Ред.), Holography, Diffractive Optics, and Applications VIII [108180X] (Proceedings of SPIE - The International Society for Optical Engineering; Том 10818). SPIE. https://doi.org/10.1117/12.2500490

Vancouver

Gavril'eva KN, Mermoul A, Sevryugin AA, Shubenkova EV, Touil M, Tursunov IM и пр. Comparative study of holographic, interferometric, and other tools for vortex beam analysis. в Zhou C, Sheng Y, Yu C, Zhou C, Редакторы, Holography, Diffractive Optics, and Applications VIII. SPIE. 2018. 108180X. (Proceedings of SPIE - The International Society for Optical Engineering). https://doi.org/10.1117/12.2500490

Author

Gavril'eva, K. N. ; Mermoul, A. ; Sevryugin, A. A. ; Shubenkova, E. V. ; Touil, M. ; Tursunov, I. M. ; Venediktov, V. Yu. / Comparative study of holographic, interferometric, and other tools for vortex beam analysis. Holography, Diffractive Optics, and Applications VIII. Редактор / Changhe Zhou ; Yunlong Sheng ; Chongxiu Yu ; Changhe Zhou. SPIE, 2018. (Proceedings of SPIE - The International Society for Optical Engineering).

BibTeX

@inproceedings{47c5b3199cdc482bb1bc8c50fbd4b622,
title = "Comparative study of holographic, interferometric, and other tools for vortex beam analysis",
abstract = "Different methods of optical vortex detection were investigated. The method of generating optical beams with a nonzero orbital angular momentum using a liquid-crystal HoloEye LC-2002 light modulator was demonstrated, and various methods for detecting optical vortices were tested. The distance at which the structure of the vortex beam decays for the technically possible aperture of the receiving interference system was determined. The results of experimental studies of beam size at different distances were presented. Calculations of the beam and the singularity of the optical vortex divergence angle are performed as a function of the length of the atmospheric path. Additional method for vortices detection based on data from the output of the Shack-Hartmann wavefront sensor using a machine learning system was also presented.",
keywords = "Atmospheric route, Optic vortex, Shearing interferometer, Topological charge, Wavefront sensor",
author = "Gavril'eva, {K. N.} and A. Mermoul and Sevryugin, {A. A.} and Shubenkova, {E. V.} and M. Touil and Tursunov, {I. M.} and Venediktov, {V. Yu}",
note = "Publisher Copyright: {\textcopyright} 2018 SPIE.; Holography, Diffractive Optics, and Applications VIII 2018 ; Conference date: 11-10-2018 Through 13-10-2018",
year = "2018",
doi = "10.1117/12.2500490",
language = "English",
series = "Proceedings of SPIE - The International Society for Optical Engineering",
publisher = "SPIE",
editor = "Changhe Zhou and Yunlong Sheng and Chongxiu Yu and Changhe Zhou",
booktitle = "Holography, Diffractive Optics, and Applications VIII",
address = "United States",

}

RIS

TY - GEN

T1 - Comparative study of holographic, interferometric, and other tools for vortex beam analysis

AU - Gavril'eva, K. N.

AU - Mermoul, A.

AU - Sevryugin, A. A.

AU - Shubenkova, E. V.

AU - Touil, M.

AU - Tursunov, I. M.

AU - Venediktov, V. Yu

N1 - Publisher Copyright: © 2018 SPIE.

PY - 2018

Y1 - 2018

N2 - Different methods of optical vortex detection were investigated. The method of generating optical beams with a nonzero orbital angular momentum using a liquid-crystal HoloEye LC-2002 light modulator was demonstrated, and various methods for detecting optical vortices were tested. The distance at which the structure of the vortex beam decays for the technically possible aperture of the receiving interference system was determined. The results of experimental studies of beam size at different distances were presented. Calculations of the beam and the singularity of the optical vortex divergence angle are performed as a function of the length of the atmospheric path. Additional method for vortices detection based on data from the output of the Shack-Hartmann wavefront sensor using a machine learning system was also presented.

AB - Different methods of optical vortex detection were investigated. The method of generating optical beams with a nonzero orbital angular momentum using a liquid-crystal HoloEye LC-2002 light modulator was demonstrated, and various methods for detecting optical vortices were tested. The distance at which the structure of the vortex beam decays for the technically possible aperture of the receiving interference system was determined. The results of experimental studies of beam size at different distances were presented. Calculations of the beam and the singularity of the optical vortex divergence angle are performed as a function of the length of the atmospheric path. Additional method for vortices detection based on data from the output of the Shack-Hartmann wavefront sensor using a machine learning system was also presented.

KW - Atmospheric route

KW - Optic vortex

KW - Shearing interferometer

KW - Topological charge

KW - Wavefront sensor

UR - http://www.scopus.com/inward/record.url?scp=85059356670&partnerID=8YFLogxK

U2 - 10.1117/12.2500490

DO - 10.1117/12.2500490

M3 - Conference contribution

AN - SCOPUS:85059356670

T3 - Proceedings of SPIE - The International Society for Optical Engineering

BT - Holography, Diffractive Optics, and Applications VIII

A2 - Zhou, Changhe

A2 - Sheng, Yunlong

A2 - Yu, Chongxiu

A2 - Zhou, Changhe

PB - SPIE

T2 - Holography, Diffractive Optics, and Applications VIII 2018

Y2 - 11 October 2018 through 13 October 2018

ER -

ID: 88444076