Raman Research Institute Library OPAC

Raman Research Institute Library OPAC

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Resonance enhancement in laser-produced plasmas : concepts and applications / Rashid A. Ganeev, Changchun Institute of Optics, Fine Mechanics and Physics, Changchun, China.

By: Material type: TextTextPublisher: Hoboken, NJ : Wiley, 2018Description: xvii, 349 pages ; 24 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781119472247
Subject(s): Additional physical formats: Online version:: Resonance enhancement in laser-produced plasmasDDC classification:
  • 530.4/43 23
LOC classification:
  • QC718.5.L3 G375 2018
Contents:
High-order harmonic studies of the role of resonances on the temporal and efficiency characteristics of converted coherent pulses : different approaches -- Different theoretical approaches in plasma hhg studies at resonance conditions -- Comparison of resonance harmonics : experiment and theory -- Resonance enhancement of harmonics in metal-ablated plasmas : early studies -- Resonance processes in ablated semiconductors -- Resonance processes at different conditions of harmonic generation in laser-produced plasmas -- Comparison of the resonance-, nanoparticle-, and quasi-phase-matching-induced processes leading to the growth of high-order harmonic yield.
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Holdings
Item type Current library Call number Status Date due Barcode
Books Books Raman Research Institute Library 533.9 GAN (Browse shelf(Opens below)) Available 29881

Includes index.

High-order harmonic studies of the role of resonances on the temporal and efficiency characteristics of converted coherent pulses : different approaches -- Different theoretical approaches in plasma hhg studies at resonance conditions -- Comparison of resonance harmonics : experiment and theory -- Resonance enhancement of harmonics in metal-ablated plasmas : early studies -- Resonance processes in ablated semiconductors -- Resonance processes at different conditions of harmonic generation in laser-produced plasmas -- Comparison of the resonance-, nanoparticle-, and quasi-phase-matching-induced processes leading to the growth of high-order harmonic yield.

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