Abstract:
We present solutions of the Leontovich–Fock parabolic equation which describe the structure of a paraxial quasi-optical wave beam in a medium with strong spatial inhomogeneity of the absorption coefficient transverse to the direction of beam propagation. Using as an example the simplest reference problem of a beam propagating along an infinitely narrow plane absorbing layer, it is shown that, in this case, the energy dissipation and refraction of the beam affect each other, so that they should be considered simultaneously, while the application of the perturbation theory can lead to qualitatively incorrect results.
The study was carried out in the framework of the state assignment for the Institute of Applied Physics (IAP) RAS (theme no. 0030-2021-0002) and the Ioffe Institute (by contract no. OK44-2-21 between the Ioffe Institute RAS and IAP RAS dated 06.08.2021).
Received:August 5, 2021 Revised:September 8, 2021 Accepted: September 24, 2021
Citation:
A. G. Shalashov, E. D. Gospodchikov, “‘Anomalous’ dissipation of a paraxial wave beam propagating along an absorbing plane”, UFN, 192:12 (2022), 1399–1408; Phys. Usp., 65:12 (2022), 1303–1312
This publication is cited in the following 3 articles:
E. D. Gospodchikov, A. A. Balakin, A. G. Shalashov, “Wigner Function Method for Describing Electromagnetic Field in Plasma-Like Media with Spatial Dispersion and Resonant Dissipation”, Plasma Phys. Rep., 50:8 (2024), 931
Ekaterina A. Zlobina, Nikita S. Fedorov, Aleksei P. Kiselev, 2024 Days on Diffraction (DD), 2024, 1
T. A. Khusainov, A. A. Balakin, E. D. Gospodchikov, A. L. Solomakhin, A. G. Shalashov, “Quasi-Optical Simulations of Scenarios with the Second Harmonic Electron Cyclotron Plasma Heating at the GDT Facility”, Plasma Phys. Rep., 50:11 (2024), 1337