Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave
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2009
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A linearly polarized electromagnetic source wave splits into six traveling wave modes (three of them are right-hand circularly-polarized (RCP) modes and three are left-hand circularly-polarized (LCP) modes) due to the interaction with a suddenly created magnetoplasma medium. When the angular frequency of the source wave is in the low-frequency region, the magnetoplasma supports two whistler wave modes (one is the transmitted RCP and the other is the reflected LCP). It is shown that the efficiency of energy conversion of the LCP whistler wave mode into the magnetic field of the wiggler is nearly of the same order of magnitude as the efficiency of the previously considered energy conversion of the RCP whistler wave mode.
Ključne reči:
Wiggler wave / Whistler wave / Source wave / Refractive index / MagnetoplasmaIzvor:
Plasma Devices and Operations, 2009, 17, 3, 215-220Finansiranje / projekti:
- Fizika elektromagnetne i radijacione kompatabilnosti elektrotehničkih materijala i komponenata (RS-MESTD-MPN2006-2010-141046)
DOI: 10.1080/10519990902957955
ISSN: 1051-9998
WoS: 000267193700006
Scopus: 2-s2.0-70349542851
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Mašinski fakultetTY - JOUR AU - Trifković, Zoran AU - Osmokrović, Predrag PY - 2009 UR - https://machinery.mas.bg.ac.rs/handle/123456789/869 AB - A linearly polarized electromagnetic source wave splits into six traveling wave modes (three of them are right-hand circularly-polarized (RCP) modes and three are left-hand circularly-polarized (LCP) modes) due to the interaction with a suddenly created magnetoplasma medium. When the angular frequency of the source wave is in the low-frequency region, the magnetoplasma supports two whistler wave modes (one is the transmitted RCP and the other is the reflected LCP). It is shown that the efficiency of energy conversion of the LCP whistler wave mode into the magnetic field of the wiggler is nearly of the same order of magnitude as the efficiency of the previously considered energy conversion of the RCP whistler wave mode. T2 - Plasma Devices and Operations T1 - Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave EP - 220 IS - 3 SP - 215 VL - 17 DO - 10.1080/10519990902957955 ER -
@article{ author = "Trifković, Zoran and Osmokrović, Predrag", year = "2009", abstract = "A linearly polarized electromagnetic source wave splits into six traveling wave modes (three of them are right-hand circularly-polarized (RCP) modes and three are left-hand circularly-polarized (LCP) modes) due to the interaction with a suddenly created magnetoplasma medium. When the angular frequency of the source wave is in the low-frequency region, the magnetoplasma supports two whistler wave modes (one is the transmitted RCP and the other is the reflected LCP). It is shown that the efficiency of energy conversion of the LCP whistler wave mode into the magnetic field of the wiggler is nearly of the same order of magnitude as the efficiency of the previously considered energy conversion of the RCP whistler wave mode.", journal = "Plasma Devices and Operations", title = "Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave", pages = "220-215", number = "3", volume = "17", doi = "10.1080/10519990902957955" }
Trifković, Z.,& Osmokrović, P.. (2009). Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave. in Plasma Devices and Operations, 17(3), 215-220. https://doi.org/10.1080/10519990902957955
Trifković Z, Osmokrović P. Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave. in Plasma Devices and Operations. 2009;17(3):215-220. doi:10.1080/10519990902957955 .
Trifković, Zoran, Osmokrović, Predrag, "Conversion of a left-hand circularly polarized whistler wave into the magnetic energy of a controllable helical wiggler wave" in Plasma Devices and Operations, 17, no. 3 (2009):215-220, https://doi.org/10.1080/10519990902957955 . .