Zobrazeno 1 - 10
of 10
pro vyhledávání: '"E. V. Slobodchikov"'
Publikováno v:
Quantum Electronics. 26:3-9
A femtosecond laser (pulse duration 30 fs, centre of the emission spectrum at λ = 1260 nm) with a chromium-doped forsterite crystal was developed. This laser operated on the basis of Kerr-lens mode locking. Synchronous pumping with an Nd3+:YAG picos
Autor:
Nikolay I. Zheludev, H. Loh, Valey Kamalov, Yu. P. Svirko, P.J. Bennett, I.R. Shatwell, S.V. Popov, Vitalyi Gusev, E. V. Slobodchikov
Publikováno v:
Optics letters. 20(12)
A fast (τresponse xxyy(ω,ω,ω,-ω) χ(3)xyyx(ω,ω,ω,-ω)| ~ 10-8 esu has been observed in bulk gold at 1260 nm by use of a new pump-probe polarization-sensitive technique.
Publikováno v:
Soviet Journal of Quantum Electronics. 20:475-478
Narrow-band (0.015 cm − 1 ) radiation was frequency-tuned in an 80-cm − 1 wide range covering the 0–0, 0–1, 0–2, and 0–3 transitions of the B–X band of XeCl* molecules. An investigation was made of the dynamics of spectral narrowing wit
Publikováno v:
Quantum Electronics. 23:134-136
This paper describes experiments involving the off-axis amplification of picosecond UV pulses by an XeCl electric-discharge excimer laser. It is shown that the increase in beam divergence due to this amplification is insignificant. The observed diver
Two-stage shortening of pulses emitted from an XeCl excimer laser by stimulated Brillouin scattering
Publikováno v:
Soviet Journal of Quantum Electronics. 21:281-283
Ultraviolet pulses of duration down to 50 ps were generated by two-stage stimulated Brillouin scattering of the radiation from an XeCl excimer laser. This was done using truncated Brillouin scattering (TRUBS) on the surface of ethanol and subsequent
Autor:
E V Slobodchikov, S V Krayushkin, Andrey B. Savel'ev, M. S. Djidjoev, I.M. Bayanov, Yu. V. Ponomarev, Nikolai N. Salashchenko, A. P. Tarasevitch, Viktor T Platonenko, Yuriy Ya. Platonov, Sergey V. Gaponov, Vyacheslav M Gordienko, S. A. Magnitskii, S. A. Akhmanov
Publikováno v:
SPIE Proceedings.
The x ray emission from femtosecond laser-driven plasma has been investigated using spherical multilayered mirrors. Different laser pulse widths have been used. The conditions required to produce high intensity x ray emission (up to 1011 W cm-2) from
Publikováno v:
Quantum Electronics. 23:907-908
Ultrashort pulses, 85 fs long, have been generated in a Cr:Mg2SiO4 (forsterite) laser pumped by a cw Nd:YAG laser. Self-mode locking was observed in experiments with no intracavity elements except two prisms used to compensate for group-velocity disp
Autor:
Yu. V. Ponomarev, E V Slobodchikov, S V Krayushkin, S. A. Akhmanov, I.M. Bayanov, Andrei B Savel'ev-Trofimov, Viktor T Platonenko, A. P. Tarasevich, Vyacheslav M Gordienko, M S Dzhidzhoev, S A Magnitskiĭ
Publikováno v:
Soviet Journal of Quantum Electronics. 21:248-249
A high-power femtosecond excimer XeCl laser system was used to generate radiation of over 1015 W/cm2 intensity on the surface of a target. X-ray pulses were emitted by a laser-generated plasma. The duration of these pulses was less than 7 ps and the
Autor:
S. A. Akhmanov, Yu. V. Ponomarev, I.M. Bayanov, Vyacheslav M Gordienko, M S Dzhidzhoev, Viktor T Platonenko, A. P. Tarasevich, E V Slobodchikov, Andrei B Savel'ev-Trofimov, S A Magnitskiĭ, S V Krayushkin
Publikováno v:
Soviet Journal of Quantum Electronics. 21:711-711
Autor:
E V Slobodchikov, S. A. Magnitskii, Andrey B. Savel'ev, Nikolai N. Salashchenko, S. A. Akhmanov, I.M. Bayanov, Yu. V. Ponomarev, Vyacheslav M Gordienko, Sergey V. Gaponov, M. S. Djidjoev, A. P. Tarasevitch, Viktor T Platonenko, Yuriy Ya. Platonov, S V Krayushkin
Publikováno v:
Scopus-Elsevier
The picosecond soh X-ray source based on femtosecond laser-driven plasma and spherical multilayred mirrors is developed. Results on VUV laser plasma spectrum. investigation and second harmonic generation are reported.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e64365a08561d0d6d923284925dc2c34
http://www.scopus.com/inward/record.url?eid=2-s2.0-0026997703&partnerID=MN8TOARS
http://www.scopus.com/inward/record.url?eid=2-s2.0-0026997703&partnerID=MN8TOARS