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Complex source point concept in the modelling of dynamic control for optical beam deflection

A rigorous analytical method for transient dynamics description in a cylindrical lens is developed and used to describe a possibility of beam controlled deflection via material tuning. The complex source point concept is used to simulate beam passing through the lens. Details of both the transien...

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Main Author: Sakhnenko, N.K.
Format: Article
Language:English
Published: Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України 2012
Series:Semiconductor Physics Quantum Electronics & Optoelectronics
Online Access:http://dspace.nbuv.gov.ua/handle/123456789/118310
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spelling irk-123456789-1183102017-05-30T03:05:28Z Complex source point concept in the modelling of dynamic control for optical beam deflection Sakhnenko, N.K. A rigorous analytical method for transient dynamics description in a cylindrical lens is developed and used to describe a possibility of beam controlled deflection via material tuning. The complex source point concept is used to simulate beam passing through the lens. Details of both the transient response and steady-state regime are described. The excited fields are described using a rigorous mathematical approach based on analytical solution in the Laplace transform domain and accurate evaluation of residues at singular points of the obtained functions. 2012 Article Complex source point concept in the modelling of dynamic control for optical beam deflection / N.K. Sakhnenko // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2012. — Т. 15, № 3. — С. 209-213. — Бібліогр.: 14 назв. — англ. 1560-8034 PACS 02.30.Uu, 42.25.Fx, Bs http://dspace.nbuv.gov.ua/handle/123456789/118310 en Semiconductor Physics Quantum Electronics & Optoelectronics Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
description A rigorous analytical method for transient dynamics description in a cylindrical lens is developed and used to describe a possibility of beam controlled deflection via material tuning. The complex source point concept is used to simulate beam passing through the lens. Details of both the transient response and steady-state regime are described. The excited fields are described using a rigorous mathematical approach based on analytical solution in the Laplace transform domain and accurate evaluation of residues at singular points of the obtained functions.
format Article
author Sakhnenko, N.K.
spellingShingle Sakhnenko, N.K.
Complex source point concept in the modelling of dynamic control for optical beam deflection
Semiconductor Physics Quantum Electronics & Optoelectronics
author_facet Sakhnenko, N.K.
author_sort Sakhnenko, N.K.
title Complex source point concept in the modelling of dynamic control for optical beam deflection
title_short Complex source point concept in the modelling of dynamic control for optical beam deflection
title_full Complex source point concept in the modelling of dynamic control for optical beam deflection
title_fullStr Complex source point concept in the modelling of dynamic control for optical beam deflection
title_full_unstemmed Complex source point concept in the modelling of dynamic control for optical beam deflection
title_sort complex source point concept in the modelling of dynamic control for optical beam deflection
publisher Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
publishDate 2012
url http://dspace.nbuv.gov.ua/handle/123456789/118310
citation_txt Complex source point concept in the modelling of dynamic control for optical beam deflection / N.K. Sakhnenko // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2012. — Т. 15, № 3. — С. 209-213. — Бібліогр.: 14 назв. — англ.
series Semiconductor Physics Quantum Electronics & Optoelectronics
work_keys_str_mv AT sakhnenkonk complexsourcepointconceptinthemodellingofdynamiccontrolforopticalbeamdeflection
first_indexed 2023-10-18T20:31:53Z
last_indexed 2023-10-18T20:31:53Z
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