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Alexander Brodsky
Alexander Brodsky
Laser systems design engineer at HoloOr
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Title
Cited by
Cited by
Year
Generating flat-top beams with extended depth of focus
V Pal, C Tradonsky, R Chriki, N Kaplan, A Brodsky, M Attia, N Davidson, ...
Applied optics 57 (16), 4583-4589, 2018
382018
LIPSS-based functional surfaces produced by multi-beam nanostructuring with 2601 beams and real-time thermal processes measurement
P Hauschwitz, J Martan, R Bičišťová, C Beltrami, D Moskal, A Brodsky, ...
Scientific reports 11 (1), 22944, 2021
312021
Numerical optimization approaches of single-pulse conduction laser welding by beam shape tailoring
J Sundqvist, AFH Kaplan, L Shachaf, A Brodsky, C Kong, J Blackburn, ...
Optics and Lasers in Engineering 79, 48-54, 2016
192016
Laser surface texturing using a single diffractive optical element as an alternative for direct laser interference patterning
A Brodsky, N Kaplan
Journal of Laser Applications 32 (3), 2020
112020
Towards rapid fabrication of superhydrophobic surfaces by multi-beam nanostructuring with 40,401 beams
P Hauschwitz, R Bičštová, A Brodsky, N Kaplan, M Cimrman, J Huynh, ...
Nanomaterials 11 (8), 1987, 2021
102021
Analytical and practical implementation of anamorphic beam shaping in polar coordinates, spinner system
A Brodsky, N Kaplan
Optics & Laser Technology 107, 408-414, 2018
62018
Adjustable‐Function Beam Shaping Methods: Improving throughput, seam height, strength, and the edge smoothness of the joints with process‐specific tailored laser intensity …
A Brodsky, N Kaplan, S Liebl, R Franke
PhotonicsViews 16 (2), 37-41, 2019
42019
Experimental demonstration of anamorphic M2 laser transformation in polar coordinates
A Brodsky, N Kaplan
Optical Engineering 58 (6), 065106-065106, 2019
32019
Adjustable ring shaping for laser welding applications: A diffractive method for shaping a laser into a spot surrounded by a ring, with continuously adjustable power ratio
A Brodsky, N Kaplan
PhotonicsViews 18 (5), 42-45, 2021
22021
3D beam shaping methods for ultrashort‐pulsed laser material processing: Improving process speed and enabling new industrial laser applications by 3D beam shaping
A Brodsky, N Kaplan
PhotonicsViews 19 (5), 56-59, 2022
12022
Thermal signature of LIPSS formation revealed by infrared diagnostics
J Martan, C Beltrami, P Hauschwitz, D Moskal, R Bičišťová, M Honner, ...
Procedia CIRP 111, 588-591, 2022
12022
STED Simulation and Analysis by the Enhanced Geometrical Ray Tracing Method
A Brodsky, N Kaplan, K Goldberg
Microscopy Today 29 (3), 60-64, 2021
12021
Diffractive elements for generating top-hat beams with extended depth of focus
V Pal, C Tradonsky, R Chriki, A Brodsky, N Kaplan, I Grossinger, ...
12019
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent App. 18/398,921, 2024
2024
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent App. 18/514,313, 2024
2024
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent 11,896,479, 2024
2024
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent 11,857,392, 2024
2024
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent App. 18/205,549, 2023
2023
Multifocal intraocular lens
M Attia, A Brodsky, N Kaplan, I Grossinger
US Patent App. 17/276,198, 2022
2022
Towards Rapid Fabrication of Superhydrophobic Surfaces by Multi-Beam Nanostructuring with 40,401 Beams. Nanomaterials 2021, 11, 1987
P Hauschwitz, R Bicštová, A Brodsky, N Kaplan, M Cimrman, J Huynh, ...
s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2021
2021
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