|
This article is cited in 1 scientific paper (total in 1 paper)
DIFFRACTIVE OPTICS, OPTICAL TECHNOLOGIES
Spatial and temporal characteristics of a four-wave radiation converter with due regard for Earth’s gravity field acting on nanoparticles dissolved in a transparent liquid
M. V. Savelyev, A. D. Remzov Samara National Research University
Abstract:
A theoretical analysis of the dynamics of the spatial spectrum of the object wave in a degenerate four-wave mixing in a transparent solution of nanoparticles in the classical scheme with counterpropagating pump waves is carried out. It is shown that when pump waves propagate orthogonally to the gravity force, a dip arises in the modulus of the spatial spectrum of the object wave, with its half-width nonmonotonically decreasing over time and increasing in the direction of gravity force with increasing radius of the nanoparticles. There is an optimal time over which the half-width of the dip in the direction of the gravity force reaches the lowest value. This time decreases monotonically with increasing nanoparticle radius, as well as with a decrease in the solution thickness.
Keywords:
four-wave radiation converter, Earth’s gravity field, transparent solution of nanoparticles
Received: 10.02.2022 Accepted: 11.03.2022
Citation:
M. V. Savelyev, A. D. Remzov, “Spatial and temporal characteristics of a four-wave radiation converter with due regard for Earth’s gravity field acting on nanoparticles dissolved in a transparent liquid”, Computer Optics, 46:4 (2022), 547–554
Linking options:
https://www.mathnet.ru/eng/co1045 https://www.mathnet.ru/eng/co/v46/i4/p547
|
Statistics & downloads: |
Abstract page: | 18 | Full-text PDF : | 3 |
|