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JOURNALS // Optics and Spectroscopy // Archive

Optics and Spectroscopy, 2018 Volume 124, Issue 4, Pages 510–517 (Mi os1032)

This article is cited in 11 papers

Nonlinear and quantum optics

Collisions of single-cycle and subcycle attosecond light pulses in a nonlinear resonant medium

R. M. Arkhipovab, M. V. Arkhipovab, A. V. Pakhomovb, D. O. Zhigulevaac, N. N. Rosanovbde

a St. Petersburg State University, St. Petersburg, 199034, Russia
b ITMO University, St. Petersburg, 197101, Russia
c Heinrich-Heine-Universität Düsseldorf, Germany
d Vavilov State Optical Institute, St. Petersburg, 199053, Russia
e Ioffe Physical Technical Institute, Russian Academy of Sciences, St. Petersburg, 194021, Russia

Abstract: By numerically solving the system of Maxwell–Bloch equations, we have examined theoretically collisions of extremely short single-cycle and unipolar subcycle pulses in a nonlinear resonant medium under conditions that the light interacts coherently with the medium. The dynamics of the electric field of structures of light-induced polarization and inversion difference has been considered in the situation in which pulses are overlapped in the medium. We show that the states of the medium (to the right and to the left of the overlap region of the pulses) may differ. In particular, we show that polarization waves with different characteristics can exist in the regions of the medium that are located on opposite sides of the overlap region of the pulses. These waves travel in different directions and have different spatial frequencies.

Received: 12.12.2017

DOI: 10.21883/OS.2018.04.45753.287-17


 English version:
Optics and Spectroscopy, 2018, 124:4, 541–548

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