Author Details

Geints, Yu. E.

Issue Section Title File
Vol 29, No 2 (2016) Nonlinear Optics Microstructure of the multiple filamentation region of femtosecond laser radiation in a solid dielectric
Vol 29, No 5 (2016) Optical Waves Propagation Dynamics of light structures during filamentation of femtosecond laser pulses in air
Vol 29, No 5 (2016) Optical Sources and Receivers for Environmental Studies The influence of spherical microcapsules on the spatial distribution of absorbed laser radiation power
Vol 30, No 3 (2017) Nonlinear Optics Parameters of intense light channels during the postfilamentation stage of ultrashort laser radiation evolution
Vol 30, No 4 (2017) Optics of Clusters, Aerosols, and Hydrosoles Optimization of optical radiation absorption by multilayer spherical microparticles
Vol 30, No 5 (2017) Optics of Stochastically-Heterogeneous Media Features of light absorption by an ensemble of microcapsules
Vol 31, No 2 (2018) Optical Waves Propagation Filamentation of Ultrashort Laser Pulse Train in Air
Vol 31, No 6 (2018) Nonlinear Optics Diffraction-Beam Optics of Filamentation: I–Formalism of Diffraction Beams and Light Tubes
Vol 31, No 6 (2018) Nonlinear Optics Diffraction-Beam Optics of Filamentation: II–Diffraction-Beam Pattern of Laser Pulse Filamentation
Vol 32, No 1 (2019) Optics of Clusters, Aerosols, and Hydrosoles Comparative Analysis of Key Parameters of Photonic Nanojets from Axisymmetric Nonspherical Microparticles
Vol 32, No 2 (2019) Optical Waves Propagation The Effect of Phase Aberrations on the Position and Length of the Filamentation Domain
Vol 32, No 3 (2019) Optics of Clusters, Aerosols, and Hydrosoles Collective Effects in the Formation of an Ensemble of Photonic Nanojets by an Ordered Microassembly of Dielectric Microparticles
Vol 32, No 4 (2019) Nonlinear Optics Simulation of Self-Focusing of Femtosecond Laser Pulses in Air by the Method of Diffraction-Beam Tubes
Vol 32, No 5 (2019) Optical Waves Propagation Simulation of Self-focusing of Femtosecond Laser Pulses with Normal Dispersion in Air Using the Diffraction-Beam Tube Approach