Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma
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2009
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Metapodaci
Prikaz svih podataka o dokumentuApstrakt
The transformation of a linearly polarized electromagnetic source wave in a suddenly created cold magnetized and weakly nonlinear plasma is considered. In the case of longitudinal propagation ( a source wave propagating along an external static magnetic field) when the ion motion is neglected, a linearly polarized electromagnetic source plane wave splits into four longitudinal oscillating modes, one stationary longitudinal mode and eight travelling electron wave modes ( four of them are transmitted and four are reflected). For the particular values of the source wave frequency and magnitude of the external magnetic field some of the created modes in plasma might be resonantly excited.
Ključne reči:
source wave / magnetoplasma / Laplace transform / Fourier transform / degenerate modeIzvor:
Plasma Devices and Operations, 2009, 17, 4, 301-308Izdavač:
- Taylor & Francis Ltd, Abingdon
Finansiranje / projekti:
- Fizika elektromagnetne i radijacione kompatabilnosti elektrotehničkih materijala i komponenata (RS-MESTD-MPN2006-2010-141046)
DOI: 10.1080/10519990903154867
ISSN: 1051-9998
WoS: 000270814100008
Scopus: 2-s2.0-70449111599
Kolekcije
Institucija/grupa
Mašinski fakultetTY - JOUR AU - Trifković, Zoran AU - Cvetić, J. M. AU - Osmokrović, Predrag PY - 2009 UR - https://machinery.mas.bg.ac.rs/handle/123456789/950 AB - The transformation of a linearly polarized electromagnetic source wave in a suddenly created cold magnetized and weakly nonlinear plasma is considered. In the case of longitudinal propagation ( a source wave propagating along an external static magnetic field) when the ion motion is neglected, a linearly polarized electromagnetic source plane wave splits into four longitudinal oscillating modes, one stationary longitudinal mode and eight travelling electron wave modes ( four of them are transmitted and four are reflected). For the particular values of the source wave frequency and magnitude of the external magnetic field some of the created modes in plasma might be resonantly excited. PB - Taylor & Francis Ltd, Abingdon T2 - Plasma Devices and Operations T1 - Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma EP - 308 IS - 4 SP - 301 VL - 17 DO - 10.1080/10519990903154867 ER -
@article{ author = "Trifković, Zoran and Cvetić, J. M. and Osmokrović, Predrag", year = "2009", abstract = "The transformation of a linearly polarized electromagnetic source wave in a suddenly created cold magnetized and weakly nonlinear plasma is considered. In the case of longitudinal propagation ( a source wave propagating along an external static magnetic field) when the ion motion is neglected, a linearly polarized electromagnetic source plane wave splits into four longitudinal oscillating modes, one stationary longitudinal mode and eight travelling electron wave modes ( four of them are transmitted and four are reflected). For the particular values of the source wave frequency and magnitude of the external magnetic field some of the created modes in plasma might be resonantly excited.", publisher = "Taylor & Francis Ltd, Abingdon", journal = "Plasma Devices and Operations", title = "Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma", pages = "308-301", number = "4", volume = "17", doi = "10.1080/10519990903154867" }
Trifković, Z., Cvetić, J. M.,& Osmokrović, P.. (2009). Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma. in Plasma Devices and Operations Taylor & Francis Ltd, Abingdon., 17(4), 301-308. https://doi.org/10.1080/10519990903154867
Trifković Z, Cvetić JM, Osmokrović P. Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma. in Plasma Devices and Operations. 2009;17(4):301-308. doi:10.1080/10519990903154867 .
Trifković, Zoran, Cvetić, J. M., Osmokrović, Predrag, "Generation of degenerate modes in suddenly created cold weakly nonlinear magnetized plasma" in Plasma Devices and Operations, 17, no. 4 (2009):301-308, https://doi.org/10.1080/10519990903154867 . .