THE PROBABILISTIC MODEL OF ULTRASHORT PULSES SCATTERING ON A FREE ELECTRON

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

We devoted our study to the generalization of the traditional approach for the description of photon scattering on free electrons in the case of ultrashort laser pulses (USLP). In the framework of the second order of quantum mechanical perturbation theory with the use of the Klein–Nishina formula, we derived the expression for the total scattering probability during the whole time of the pulse action that is applicable in the relativistic limit. The redshift of scattered pulse spectra at the scattering angle increase in the relativistic case was studied. The trends of the total scattering probability on the USLP duration were categorized.

Sobre autores

A. Bugaev

Moscow Institute of Physics and Technology (National Research University)

Email: Egor.Khramov@phystech.edu
Russia, Moscow

E. Khramov

Moscow Institute of Physics and Technology (National Research University)

Autor responsável pela correspondência
Email: Egor.Khramov@phystech.edu
Russia, Moscow

V. Astapenko

Moscow Institute of Physics and Technology (National Research University)

Email: Egor.Khramov@phystech.edu
Russia, Moscow

Bibliografia

  1. Lawrence J.R., Waugh D. Laser Surface Engineering: Processes and Applications. Elsevier, 2014.
  2. Varro S. Free Electron Lasers. Intech, Rijeka, 2012.
  3. Kang H.S., Ko I.S. // Nat. Photonics. 2020. V. 14. P. 7–8.
  4. Kida Y., Kinjo R., Tanaka T. // Appl. Phys. Lett. 2016. V. 109. 151107.
  5. McNeil B.W.J., Thompson N.R. // Nat. Photonics. 2010. V. 4. P. 814–821.
  6. Klein O., Nishina T. // Z. Phys. 1929. V. 52. P. 11–12.
  7. Nelms A.T. Graphs of the Compton energy-angle relationship and the Klein–Nishina formula from 10 keV to 500 MeV // US Government Printing Office, Washington, 1953. V. 542.
  8. Chao C.Y. // Phys. Rev. 1930. V. 36. 10.
  9. Read J., Lauritsen C.C. // Phys. Rev. 1934. V. 45. P. 7.
  10. Astapenko V.A. // Phys. Lett. A. 2010. V. 374. P. 1585–1590.
  11. Астапенко В.А. // ЖЭТФ. 2011. Т. 139. С. 228.
  12. Astapenko V.A., Rosmej F.B., Lisitsa V.S., Khramov E.S. // Phys. Plasmas. 2020. V. 27. 083301.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML
2.

Baixar (269KB)
3.

Baixar (103KB)

Declaração de direitos autorais © А.С. Бугаёв, Е.С. Храмов, В.А. Астапенко, 2023

Este site utiliza cookies

Ao continuar usando nosso site, você concorda com o procedimento de cookies que mantêm o site funcionando normalmente.

Informação sobre cookies