Standard

Light scattering by axisymmetric particles : The separation of variables method with spheroidal basis. / Farafonov, Victor G.; Il'in, V. B.; Vinokurov, A. A.

Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010. Том 7996 2011. 79960N.

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

Harvard

Farafonov, VG, Il'in, VB & Vinokurov, AA 2011, Light scattering by axisymmetric particles: The separation of variables method with spheroidal basis. в Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010. Том. 7996, 79960N, Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010, St. Petersburg, Российская Федерация, 5/07/10. https://doi.org/10.1117/12.887771

APA

Farafonov, V. G., Il'in, V. B., & Vinokurov, A. A. (2011). Light scattering by axisymmetric particles: The separation of variables method with spheroidal basis. в Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010 (Том 7996). [79960N] https://doi.org/10.1117/12.887771

Vancouver

Farafonov VG, Il'in VB, Vinokurov AA. Light scattering by axisymmetric particles: The separation of variables method with spheroidal basis. в Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010. Том 7996. 2011. 79960N https://doi.org/10.1117/12.887771

Author

Farafonov, Victor G. ; Il'in, V. B. ; Vinokurov, A. A. / Light scattering by axisymmetric particles : The separation of variables method with spheroidal basis. Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010. Том 7996 2011.

BibTeX

@inproceedings{b6535f2cf34144f7aa6e2aa6375dbdd0,
title = "Light scattering by axisymmetric particles: The separation of variables method with spheroidal basis",
abstract = "We suggest a separation of variables method based on expansions of the electromagnetic fields in terms of spheroidal wave functions. Our approach includes splitting the fields in two specific parts and choice of proper scalar potentials for each of them. An earlier analysis of similar methods in the case of a spherical basis has shown that the SVM has a wider practical applicability range than other methods. It was also found that when using a spheroidal basis our general approach gave reliable results for particles of high eccentricity for which other approaches were inapplicable. Thus, the suggested SVM should be highly efficient in calculations of optical properties of various nonspherical scatterers in a wide range of parameter values.",
keywords = "Electromagnetics, Laight scattering, Non-spherical particles, Separation of variables method",
author = "Farafonov, {Victor G.} and Il'in, {V. B.} and Vinokurov, {A. A.}",
year = "2011",
month = mar,
day = "23",
doi = "10.1117/12.887771",
language = "English",
isbn = "9780819485694",
volume = "7996",
booktitle = "Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010",
note = "Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010 ; Conference date: 05-07-2010 Through 08-07-2010",

}

RIS

TY - GEN

T1 - Light scattering by axisymmetric particles

T2 - Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010

AU - Farafonov, Victor G.

AU - Il'in, V. B.

AU - Vinokurov, A. A.

PY - 2011/3/23

Y1 - 2011/3/23

N2 - We suggest a separation of variables method based on expansions of the electromagnetic fields in terms of spheroidal wave functions. Our approach includes splitting the fields in two specific parts and choice of proper scalar potentials for each of them. An earlier analysis of similar methods in the case of a spherical basis has shown that the SVM has a wider practical applicability range than other methods. It was also found that when using a spheroidal basis our general approach gave reliable results for particles of high eccentricity for which other approaches were inapplicable. Thus, the suggested SVM should be highly efficient in calculations of optical properties of various nonspherical scatterers in a wide range of parameter values.

AB - We suggest a separation of variables method based on expansions of the electromagnetic fields in terms of spheroidal wave functions. Our approach includes splitting the fields in two specific parts and choice of proper scalar potentials for each of them. An earlier analysis of similar methods in the case of a spherical basis has shown that the SVM has a wider practical applicability range than other methods. It was also found that when using a spheroidal basis our general approach gave reliable results for particles of high eccentricity for which other approaches were inapplicable. Thus, the suggested SVM should be highly efficient in calculations of optical properties of various nonspherical scatterers in a wide range of parameter values.

KW - Electromagnetics

KW - Laight scattering

KW - Non-spherical particles

KW - Separation of variables method

UR - http://www.scopus.com/inward/record.url?scp=79952753919&partnerID=8YFLogxK

U2 - 10.1117/12.887771

DO - 10.1117/12.887771

M3 - Conference contribution

AN - SCOPUS:79952753919

SN - 9780819485694

VL - 7996

BT - Fundamentals of Laser-Assisted Micro- and Nanotechnologies 2010

Y2 - 5 July 2010 through 8 July 2010

ER -

ID: 34871739