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Biological and Medical Sciences. Engineering, Informatics and Telecommunication Sciences. Geotechnical, Energy, Environmental and Aerospatiale Sciences. Mathematics, Physics, Chemistry. Social, Administrative and Economical Sciences. The research plan is divided into three main activities: Interaction of ultra-short electron and EM pulses with atoms, molecules and molecular clusters, including a molecular alignment and orientation induced by laser pulses, b molecular dissociation and isomerization processes using high-order harmonics and pulsed electron diffraction and c comparative study of atomic ionization and molecular dissociative ionization under 7fs and 35fs laser pulses.
Production via high-order harmonic generation of XUV attosecond pulses? Comparative study of the non-linear optical properties at nanostructured surfaces under ns, ps and fs laser pulses in order to resolve the contribution of the physical processes involved. Moloney, , Super high power mid-infrared femtosecond light bullet, Nat.
Andriukaitis, T. Popmintchev, M.
Chen, M. Murnane, and H. Kapteyn, , 90 GW peak power few-cycle mid-infrared pulses from an optical parametric amplifier, Opt. Jhajj, E. Rosenthal, R. Birnbaum, J. Wahlstrand, and H. X 4 1 : During the re-encounter, the interaction of the high-energy electron with the parent ion can result in what is essentially sub-femtosecond Bremsstrahlung emission of a short wavelength photon. The HHG light is emitted as a directed, coherent, and collimated beam. Coherent HHG emission is a universal response of atoms, molecules, and even solids to an intense femtosecond laser field.
The deBroglie wavelength of the active electron is comparable to interatomic spacing in molecules, so that HHG emission is sensitive to rotations, vibrations, and chemical dynamics. More recent work has observed HHG from solid materials and has shown that this emission is sen-. McPherson, G. Gibson, H.
Interaction of Ultrashort Electromagnetic Pulses with Matter
Jara, U. Johann, T.
Luk, I. McIntyre, K. Boyer, and C. Rhodes, , Studies of multiphoton production of vacuum-ultraviolet radiation in the rare gasses, Journal of the Optical Society of America B 4: ; M. Ferray, A.
Lhuillier, X. Li, L. Lompre, G.
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- Plasmas Interacting with Superstrong Lasers: Contributions to Plasma Physics: Vol 53, No 2.
Mainfray, and C. Shore and K. Kulander, , Generation of optical harmonics by intense pulses of laser-radiation, Journal of Modern Optics 36 7 : ; J. Krause, K. Schafer, and K. Kulander, , High-order harmonic-generation from atoms and ions in the high-intensity regime, Physical Review Letters 68 24 : ; P.
- Interaction of Ultrashort Electromagnetic Pulses with Matter!
- Interaction of Ultrashort Electromagnetic Pulses with Matter | Valeriy Astapenko | Springer.
Corkum, , Plasma perspective on strong field multiphoton ionization, Physical Review Letters ; M. Lewenstein, P. Balcou, M. Ivanov, A. Corkum, , Theory of high-harmonic generation by low-frequency laser fields, Physical Review A 49 3 : ; J. Zhou, J.
Peatross, M. Murnane, H. Kapteyn, and I. Christov, , Enhanced high harmonic generation using 25 femtosecond laser pulses, Physical Review Letters 76 5 : ; Z. Chang, A. Rundquist, H.
Progress in Ultra-short Electromagnetic Pulse Technology - 1st Edition
Wang, I. Christov, H. Kapteyn, and M. Rundquist, C. Durfee, Z. Chang, C.
Interaction of Femtosecond Laser Pulses with Solids: Electron/Phonon/Plasmon Dynamics
Herne, S. Backus, M.
Kapteyn, , Phase-matched generation of coherent soft X-rays, Science : Itatani, J. Levesque, D. Zeidler, H. Niikura, H.
- Progress in Ultra-short Electromagnetic Pulse Technology!
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- Interaction of ultrashort-pulsed lasers and matter | The Cundiff Laboratory.
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Pepin, J. Kieffer, P. Corkum, and D. Ville-neuve, , Tomographic imaging of molecular orbitals, Nature : ; N.