krf laser
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Author(s):  
HEDIEH PAZOKIAN ◽  
MOHAMMAD REZA RASHIDIAN VAZIRI

Laser irradiation is used for surface modification of polymers aiming to improve their properties for different applications. The wettability of a polymeric surface can significantly affect its performance for biological applications. In this paper, the interaction of high-energy KrF laser photons in the two above- and below-threshold regimes with polyethersulfone polymer is studied. The role of morphological and chemical changes of the irradiated polymer and their correlation in the modification of the wetting property of this polymer is investigated. The obtained results show that the morphological parameter of surface roughness is the dominant mechanism in the below-threshold regime, while in the above-threshold region, the competition between this parameter and the carbonization amount of the surface determines the final hydrophilic response.


Symmetry ◽  
2021 ◽  
Vol 13 (10) ◽  
pp. 1883
Author(s):  
Vladimir D. Zvorykin ◽  
Sergei V. Arlantsev ◽  
Alexey V. Shutov ◽  
Nikolay N. Ustinovskii ◽  
Polad V. Veliev

Long (~1 mm), narrow (30−40 μm in diameter) corrugated capillary-like channels were produced in the axially symmetric 2D interaction regime of 100 ns KrF laser pulses with polymethylmethacrylate (PMMA) at intensities of up to 5 × 1012 W/cm2. The channels extended from the top of a deep (~1 mm) conical ablative crater and terminated in a 0.5 mm size crown-like pattern. The modeling experiments with preliminary drilled capillaries in PMMA targets and Monte Carlo simulations evidenced that the crown origin might be caused by high-energy (0.1–0.25 MeV) electrons, which are much higher than the electron temperature of the plasma corona ~100 eV. This indicates the presence of an unusual direct electron acceleration regime. Firstly, fast electrons are generated due to laser plasma instabilities favored by a long-length interaction of a narrow-band radiation with plasma in the crater. Then, the electrons are accelerated by an axial component of the electrical field in a plasma-filled corrugated capillary waveguide enhanced by radiation self-focusing and specular reflection at the radial plasma gradient, while channel ripples serve the slowing down of the electromagnetic wave in the phase with electrons.


2021 ◽  
Vol 63 (12) ◽  
pp. 2070-2075
Author(s):  
Hongda Li ◽  
Y. N. Panchenko ◽  
M. V. Andreev ◽  
A. V. Puchikin ◽  
S. A. Yampolskaya ◽  
...  

2021 ◽  
Vol 28 (3) ◽  
pp. 032704
Author(s):  
Jaechul Oh ◽  
Andrew J. Schmitt ◽  
Max Karasik ◽  
Stephen P. Obenschain
Keyword(s):  

Photonics ◽  
2021 ◽  
Vol 8 (2) ◽  
pp. 47
Author(s):  
Igor V. Smetanin ◽  
Alexey V. Shutov ◽  
Nikolay N. Ustinovskii ◽  
Vladimir D. Zvorykin ◽  
Anna V. Bogatskaya ◽  
...  

We develop theoretical background for the new nonlinear optical phenomenon of narrowly directed monochromatic IR conical emission which has been recently observed when 248-nm UV filaments propagate in xenon (V. D. Zvorykin, et al., Laser Phys. Lett. 13, 125404 (2016)). We treat it as coherent stimulated four-wave mixing process in which two pump KrF laser photons are converted into the coupled pair of resonance IR(828 nm) and VUV (147 nm) photons through 5p5(2P3/2)6p[1/2]0→5p5(2P3/2)6s[3/2]1o and 5p5(2P3/2)6s[3/2]1o→1S0 transitions. We explore the coherent interaction regime which proceeds at a time scale shorter than transverse relaxation time T2. The momentum and energy conservation laws determine the characteristic angle of conical emission. We find that the threshold of this coherent process is determined by the KrF laser pump pulse area.


Author(s):  
Yuri Panchenko ◽  
Alexey Puchikin ◽  
Sofia Yampolskaya ◽  
Sergey Bobrovnikov ◽  
Evgeniy Gorlov ◽  
...  
Keyword(s):  

2020 ◽  
Vol 50 (12) ◽  
pp. 1173-1178
Author(s):  
P.B. Sergeev ◽  
A.N. Kirichenko ◽  
K.S. Kravchuk ◽  
N.V. Morozov ◽  
R.A. Khmelnitskii
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