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- W2034888710 abstract "The results of a numerical study of high-intensity X-ray laser beam interaction with warm quantum plasma (WQP) are presented. By means of an upward ramp density profile combined with quantum factors specially the Fermi velocity, we have demonstrated significant relativistic self-focusing (RSF) of a Gaussian electromagnetic beam in the WQP where the Fermi temperature term in the dielectric function is important. For this purpose, we have considered the quantum hydrodynamics model that modifies refractive index of inhomogeneous WQPs with the inclusion of quantum correction through the quantum statistical and diffraction effects in the relativistic regime. Also, to better illustration of the physical difference between warm and cold quantum plasmas and their effect on the RSF, we have derived the envelope equation governing the spot size of X-ray laser beam in Q-plasmas. In addition to the upward ramp density profile, we have found that the quantum effects would be caused much higher oscillation and better focusing of X-ray laser beam in the WQP compared to that of cold quantum case. Our computational results reveal the importance of the use of electrons density profile and Fermi speed in enhancing self-focusing of laser beam." @default.
- W2034888710 created "2016-06-24" @default.
- W2034888710 creator A5024453601 @default.
- W2034888710 creator A5036198232 @default.
- W2034888710 date "2014-05-01" @default.
- W2034888710 modified "2023-09-26" @default.
- W2034888710 title "Relativistic self-focusing of ultra-high intensity X-ray laser beams in warm quantum plasma with upward density profile" @default.
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- W2034888710 doi "https://doi.org/10.1063/1.4876751" @default.
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