Association Mission
The mission of the association is to advance the creation, communication and application of knowledge to benefit society and improve people's lives.
Membership
Contact Us
year 28, Issue 2 (ICOP & ICPET 2022 2022)
ICOP & ICPET _ INPC _ ICOFS 2022, 28(2): 6-9 |
Back to browse issues page
Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:
Alizadeh Sangli A, Rajabi Y. Simulation of far-field diffraction evolution due to the propagation of high-power laser beam from the nanofluid. ICOP & ICPET _ INPC _ ICOFS 2022; 28 (2) :6-9
URL: http://opsi.ir/article-1-2749-en.html
URL: http://opsi.ir/article-1-2749-en.html
1- iran
Abstract: (577 Views)
Recently, has been observed that some fluids, when exposed to intense laser beam, cause a phase difference in the beam and then lead to a circular diffraction pattern. In this paper, the evolution of laser beam diffraction due to the propagation of a nanofluid using numerical simulation is investigated. Also, using experimental and theoretical results and software simulations, diffraction patterns due to the propagation of high-power laser beam from nonlinear nanofluid are obtained. Then, using simulated diffraction pattern, the nonlinear refractive index of nanofluid is obtained.
Type of Study: Experimental |
Subject:
Special
Send email to the article author
Rights and permissions | |
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. |