УДК 53 Физика
УДК 520 Инструменты, приборы и методы астрономических наблюдений, измерений и анализа
УДК 521 Теоретическая астрономия. Небесная механика. Фундаментальная астрономия. Теория динамической и позиционной астрономии
УДК 523 Солнечная система
УДК 524 Звезды и звездные системы. Вселенная Солнце и Солнечная система
УДК 52-1 Метод изучения
УДК 52-6 Излучение и связанные с ним процессы
ГРНТИ 41.00 АСТРОНОМИЯ
ГРНТИ 29.35 Радиофизика. Физические основы электроники
ГРНТИ 29.31 Оптика
ГРНТИ 29.33 Лазерная физика
ГРНТИ 29.27 Физика плазмы
ГРНТИ 29.05 Физика элементарных частиц. Теория полей. Физика высоких энергий
ОКСО 03.06.01 Физика и астрономия
ОКСО 03.05.01 Астрономия
ОКСО 03.04.03 Радиофизика
ББК 2 ЕСТЕСТВЕННЫЕ НАУКИ
ББК 223 Физика
ТБК 614 Астрономия
ТБК 6135 Оптика
BISAC SCI004000 Astronomy
BISAC SCI005000 Physics / Astrophysics
The presence of even simple magnetized wormholes may have observable consequences. If the wormhole and its surrounding magnetic fields are static, symmetrical, and spherical, and gas in the vicinity falls radially into the wormhole, the resulting spectrum would feature bright cyclotron or synchrotron lines caused by interactions between charged plasma particles and the magnetic field. This radiation would be non-polarized due to the symmetry of the system. The emission of this exotic, non-thermal yet non-polarized type of radiation could serve as a signature for wormholes. Additionally, in this scenario, the formation of an accretion disk is still possible at some distance from the wormhole; however, a monopole magnetic field may complicate this process and lead to the emergence of asymmetrical and one-sided relativistic jets.
accretion, accretion disks, magnetic fields, gravitation
1. Blandford R. and Znajek R., 1977, Monthly Notices of the Royal Astronomical Society, 179, p. 433
2. Bronnikov K., 1973, Acta Physica Polonica B, 4, 3, p. 251
3. Cawthorne T., 1991, Beams and Jets in Astrophysics, 19, p.187
4. Ellis H., 1973, Journal of Mathematical Physics, 14, p. 104
5. Harko T., Kovács Z., Lobo F., 2009, Physical Review D, 79, id. 064001
6. Kardashev N., Novikov I., Shatskiy A., 2007, International Journal of Modern Physics D, 16, p. 909
7. Lobo F., 2017, Fundamental Theories of Physics, 189
8. Misner C. and Wheeler J., 1957, Annals of Physics, 2, p. 525
9. Morris M., Thorne K., Yurtsever U., 1988, Physical Review Letters, 61, p. 1446
10. Piotrovich M., Krasnikov S., Buliga S., et al., 2020, Monthly Notices of the Royal Astronomical Society, 498, p. 3684
11. Piotrovich M., Krasnikov S., Buliga S., et al., 2020, Universe, 6, id. 120