On the Electric Area of an Electromagnetic Pulse
- Autores: Bogatskaya A.V.1,2, Popov A.M.1,2
- 
							Afiliações: 
							- Faculty of Physics, Moscow State University
- Lebedev Physical Institute, Russian Academy of Sciences
 
- Edição: Volume 118, Nº 3-4 (8) (2023)
- Páginas: 291-296
- Seção: Articles
- URL: https://cardiosomatics.ru/0370-274X/article/view/663158
- DOI: https://doi.org/10.31857/S1234567823160115
- EDN: https://elibrary.ru/IWKCFL
- ID: 663158
Citar
Texto integral
 Acesso aberto
		                                Acesso aberto Acesso está concedido
						Acesso está concedido Acesso é pago ou somente para assinantes
		                                							Acesso é pago ou somente para assinantes
		                                					Resumo
The propagation of ultrashort electromagnetic pulses with a nonzero electric area in plasma media is analyzed. An equation for the area of an electromagnetic pulse in the one-dimensional geometry has been derived in the unidirectional propagation approximation. It has been shown that this area is not an invariant of motion and can both decrease and increase during the propagation of the pulse depending on the properties of a plasma medium.
Sobre autores
A. Bogatskaya
Faculty of Physics, Moscow State University;Lebedev Physical Institute, Russian Academy of Sciences
														Email: alexander.m.popov@gmail.com
				                					                																			                												                								119991, Moscow, Russia;119991, Moscow, Russia						
A. Popov
Faculty of Physics, Moscow State University;Lebedev Physical Institute, Russian Academy of Sciences
							Autor responsável pela correspondência
							Email: alexander.m.popo@gmail.com
				                					                																			                												                								119991, Moscow, Russia;119991, Moscow, Russia						
Bibliografia
- T. Seifert, S. Jaiswal, M. Sajadi, G. Jakob, S. Winner, M. Wolf, M. Kl¨aui, and T. Kampfrath, Appl. Phys. Lett. 110, 252402 (2017).
- T. Balˇciu¯nas, D. Lorenc, M. Ivanov, O. Smirnova, A. M. Zheltikov, D. Dietze, K. Unterrainer, T. Rathje, G. G. Paulus, A. Baltuˇska, and S. Haessler, Opt. Express 23,15278 (2015).
- D. Zhang, Y. Bai, Y. Zeng, Y. Ding, Zh. Li, Ch. Zhou, Y. Leng, L. Song, Y. Tian, and R. Li, IEEE Photon. J. 14(1), 5910605 (2022).
- Y. Shou, R. Hu, Z. Gong, J. Yu, J. Chen, G. Mourou, X. Yan, and W. Ma, New J. Phys. 23, 053003 (2021).
- J. Xu, B. Shen, X. Zhang, Y. Shi, L. Ji, L. Zhang, T. Xu, W. Wang, X. Zhao, and Z. Xu, Sci. Rep. 8, 2669 (2018).
- A. E. Lita, A. J. Miller, and S. W. Nam, Opt. Express 16, 3032 (2008).
- Е. Г. Бессонов, ЖЭТФ 80, 852 (1981).
- Р. М. Архипов, М. В. Архипов, А. В. Пахомов, Н. Н. Розанов, Письма в ЖЭТФ 114(3), 156 (2021).
- R. Arkhipov, A. Pakhomov, M. Arkhipov, I. Babushkin, A. Demircan, U. Morgner, and N. N. Rosanov, Opt. Lett. 44, 1202 (2019).
- A. Pakhomov, M. Arkhipov, N. Rosanov, and R. Arkhipov, Phys. Rev. A 105, 043103 (2022).
- N. Rosanov, D. Tumakov, M. Arkhipov, and R. Arkhipov, Phys. Rev. A 104, 063101 (2021).
- A. Pakhomov, M. Arkhipov, N. Rosanov, and R. Arkhipov, Phys. Rev. A 105, 043103 (2022).
- M. Th. Hassan, T. T. Luu, A. Moulet, F. Scheiba, M. A. Silva-Toledo, Sh.-H. Chia, Ph. D. Keathley, Sh. Fang, O. D. Mucke, C. Manzoni, G. Cerullo, G. Cirmi, and F. X. K¨artner, Nature Photon. 14, 629 (2020).
- M. V. Arkhipov, R. M. Arkhipov, A. V. Pakhomov, I. V. Babushkin, A. Demircan, U. Morgner, and N. N. Rosanov, Opt. Lett. 42, 2189 (2017).
- A. V. Pakhomov, R. M. Arkhipov, M. V. Arkhipov, A. Demircan, U. Morgner, N. N. Rosanov, and I. Babushkin, Sci. Rep. 9, 7444 (2019).
- M. I. Bakunov, A. V. Maslov, and M. V. Tsarev, Phys. Rev. A 95,063817 (2017).
- M. V. Tsarev and M. I. Bakunov, Opt. Express 27, 5154 (2019).
- V. V. Kozlov, N. N. Rosanov, C. D. Angelis, and S. Wabnitz, Phys. Rev. A 84, 023818 (2011).
- Р. М. Архипов, М. В. Архипов, Н. Н. Розанов, Квантовая электроника 50, 801 (2020).
- М. В. Архипов, Р. М. Архипов, Н. Н. Розанов, Оптика и спектроскопия 129, 1173 (2021).
- A. V. Bogatskaya, E. A. Volkova, and A. M. Popov, Phys. Rev. E 104, 025202 (2021).
- A. V. Bogatskaya, E. A. Volkova, and A. M. Popov, Plasma Sources Sci. Technol. 30, 085001 (2021).
- Р. М. Архипов, М. В. Архипов, А. В. Пахомов, П. А. Образцов, Н. Н. Розанов, Письма в ЖЭТФ 117, 10 (2023).
- Н. Н. Розанов, Р. М. Архипов, М. В. Архипов, УФН 188, 1347 (2018).
- Н. Н. Розанов, Оптика и спектроскопия 127, 960 (2019).
- Л. Д. Ландау, Е. М. Лифшиц, Электродинамика сплошных сред, Наука, М. (1982), с. 436.
- M. Kolesik and J. V. Moloney, Phys. Rev. E 70, 036604 (2004).
- A. Couairon, O. G. Kosareva, N. A. Panov, D. E. Shipilo, V. A. Andreeva, V. Jukna, and F. Nesa, Opt. Express 23, 31240 (2015).
- S. V. Sazonov, Laser Phys. Lett. 18, 105401 (2021).
- A. V. Bogatskaya and A. M. Popov, Laser Phys. Lett. 16, 066008 (2019).
- А. В. Богацкая, А. М. Попов, Письма в ЖЭТФ 97(7), 453 (2013)
- JETP Lett. 97(7), 388 (2013).
- A. V. Bogatskaya, A. M. Popov, and I. V. Smetanin, J.Rus. Las. Research 35(5), 437 (2014).
- A. V. Bogatskaya, E. A. Volkova, and A. M. Popov, Photonics 10(2), 113 (2023).
Arquivos suplementares
 
				
			 
						 
						 
					 
						 
						 
									

 
  
  
  Enviar artigo por via de e-mail
			Enviar artigo por via de e-mail 
