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Wave propagation coefficients in non-maxwellian plasma. / Yuan, Chengxun; Bekasov, V. S.; Kudryavtsev, A. A.

2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings. Том 2017-November Electromagnetics Academy, 2017. стр. 553-558.

Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференциинаучнаяРецензирование

Harvard

Yuan, C, Bekasov, VS & Kudryavtsev, AA 2017, Wave propagation coefficients in non-maxwellian plasma. в 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings. Том. 2017-November, Electromagnetics Academy, стр. 553-558, 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017, Singapore, Сингапур, 19/11/17. https://doi.org/10.1109/PIERS-FALL.2017.8293199

APA

Yuan, C., Bekasov, V. S., & Kudryavtsev, A. A. (2017). Wave propagation coefficients in non-maxwellian plasma. в 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings (Том 2017-November, стр. 553-558). Electromagnetics Academy. https://doi.org/10.1109/PIERS-FALL.2017.8293199

Vancouver

Yuan C, Bekasov VS, Kudryavtsev AA. Wave propagation coefficients in non-maxwellian plasma. в 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings. Том 2017-November. Electromagnetics Academy. 2017. стр. 553-558 https://doi.org/10.1109/PIERS-FALL.2017.8293199

Author

Yuan, Chengxun ; Bekasov, V. S. ; Kudryavtsev, A. A. / Wave propagation coefficients in non-maxwellian plasma. 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings. Том 2017-November Electromagnetics Academy, 2017. стр. 553-558

BibTeX

@inproceedings{fe28a03315b94986ae6a2a9ef6b077b3,
title = "Wave propagation coefficients in non-maxwellian plasma",
abstract = "The problem of electromagnetic waves interaction with a “non-Maxwellian” plasma is still insufficiently studied. In this work, an attempt is made to clarify the values of the propagation constants of electromagnetic waves through a plasma, using the example of a homogeneous plasma layer for different EDFs. The Maxwellian, Druyvesteyn, Bi-maxwellian and Pipe-like distribution functions were considered. The values of the complex dielectric permittivity for various EDFs were obtained, and the corresponding reflection, transmission and absorption coefficients were calculated. It was shown that in some cases the form of EDF can have a significant effect on the dielectric properties of the plasma. For example, for some frequency ranges, the values of the permittivity calculated for different EDFs can differ by several times. Considering the results obtained, along with other modifications to the classical theory of signal propagation in the ionosphere, will improve the quality and reliability of communication between aircraft and ground stations, improve the accuracy of positioning of GPS navigation systems and expand the capabilities of satellite Internet.",
author = "Chengxun Yuan and Bekasov, {V. S.} and Kudryavtsev, {A. A.}",
year = "2017",
month = nov,
day = "20",
doi = "10.1109/PIERS-FALL.2017.8293199",
language = "English",
volume = "2017-November",
pages = "553--558",
booktitle = "2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings",
publisher = "Electromagnetics Academy",
address = "United States",
note = "2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 ; Conference date: 19-11-2017 Through 22-11-2017",

}

RIS

TY - GEN

T1 - Wave propagation coefficients in non-maxwellian plasma

AU - Yuan, Chengxun

AU - Bekasov, V. S.

AU - Kudryavtsev, A. A.

PY - 2017/11/20

Y1 - 2017/11/20

N2 - The problem of electromagnetic waves interaction with a “non-Maxwellian” plasma is still insufficiently studied. In this work, an attempt is made to clarify the values of the propagation constants of electromagnetic waves through a plasma, using the example of a homogeneous plasma layer for different EDFs. The Maxwellian, Druyvesteyn, Bi-maxwellian and Pipe-like distribution functions were considered. The values of the complex dielectric permittivity for various EDFs were obtained, and the corresponding reflection, transmission and absorption coefficients were calculated. It was shown that in some cases the form of EDF can have a significant effect on the dielectric properties of the plasma. For example, for some frequency ranges, the values of the permittivity calculated for different EDFs can differ by several times. Considering the results obtained, along with other modifications to the classical theory of signal propagation in the ionosphere, will improve the quality and reliability of communication between aircraft and ground stations, improve the accuracy of positioning of GPS navigation systems and expand the capabilities of satellite Internet.

AB - The problem of electromagnetic waves interaction with a “non-Maxwellian” plasma is still insufficiently studied. In this work, an attempt is made to clarify the values of the propagation constants of electromagnetic waves through a plasma, using the example of a homogeneous plasma layer for different EDFs. The Maxwellian, Druyvesteyn, Bi-maxwellian and Pipe-like distribution functions were considered. The values of the complex dielectric permittivity for various EDFs were obtained, and the corresponding reflection, transmission and absorption coefficients were calculated. It was shown that in some cases the form of EDF can have a significant effect on the dielectric properties of the plasma. For example, for some frequency ranges, the values of the permittivity calculated for different EDFs can differ by several times. Considering the results obtained, along with other modifications to the classical theory of signal propagation in the ionosphere, will improve the quality and reliability of communication between aircraft and ground stations, improve the accuracy of positioning of GPS navigation systems and expand the capabilities of satellite Internet.

UR - http://www.scopus.com/inward/record.url?scp=85045328178&partnerID=8YFLogxK

U2 - 10.1109/PIERS-FALL.2017.8293199

DO - 10.1109/PIERS-FALL.2017.8293199

M3 - Conference contribution

AN - SCOPUS:85045328178

VL - 2017-November

SP - 553

EP - 558

BT - 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017 - Proceedings

PB - Electromagnetics Academy

T2 - 2017 Progress In Electromagnetics Research Symposium - Fall, PIERS - FALL 2017

Y2 - 19 November 2017 through 22 November 2017

ER -

ID: 36265117