Rocca / Marconi / Menoni | X-Ray Lasers 2014 | Buch | 978-3-319-19520-9 | sack.de

Buch, Englisch, Band 169, 416 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 8041 g

Reihe: Springer Proceedings in Physics

Rocca / Marconi / Menoni

X-Ray Lasers 2014

Proceedings of the 14th International Conference on X-Ray Lasers
2016
ISBN: 978-3-319-19520-9
Verlag: Springer International Publishing

Proceedings of the 14th International Conference on X-Ray Lasers

Buch, Englisch, Band 169, 416 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 8041 g

Reihe: Springer Proceedings in Physics

ISBN: 978-3-319-19520-9
Verlag: Springer International Publishing


These proceedings comprise invited and contributed papers presented at the 14th International Conference on X-Ray Lasers (ICXRL 2014). This conference is part of a continuing series dedicated to recent developments and applications of x-ray lasers and other coherent x-ray sources with attention to supporting technologies and instrumentation.

New results in the generation of intense, coherent x-rays and progress toward practical devices and their applications in numerous fields are reported. Areas of research in plasma-based x-ray lasers, 4th generation accelerator-based sources and higher harmonic generation, and other x-ray generation schemes are covered.

The scope of ICXRL 2014 included, but was not limited to:

  • Laser-pumped X-ray lasers
  • Discharge excitation and other X-ray laser pumping methods
  • Injection/seeding of X-ray amplifiers
  • New lasing transitions and novel X-ray laser schemes
  • High Harmonic sources-Free-electron laser generation in the XUV and X-ray range
  • Novel schemes for coherent XUV and X-ray generation
  • XUV and X-ray optics and metrology-Driving laser technology
  • Theory and modeling of X-ray gain medium and beam characteristics
  • Applicationsof high brightness and ultrashort X-ray sources
Rocca / Marconi / Menoni X-Ray Lasers 2014 jetzt bestellen!

Zielgruppe


Research

Weitere Infos & Material


1. Progress and Prospects of Coherent X-Ray Research Using High Power Lasers in Japan Atomic Energy Agency.- 2. Advances in High Average Power, 100 Hz Repetition Rate Table-top Soft X-Ray Lasers.- 3. Possibility of Recombination Gain Increase in CV Ions at 4.0nm via Coherence.- 4. Overview of development of laser driven secondary sources at PALS and ELI.- 5. Spectral properties of collisional XUV lasers for the amplification of femtosecond pulses.- 6. Transient collisionally excited x-ray Lasers pumped with one long and two short pulses.- 7. Seeded operation of a Ne-like Titanium soft x-ray laser.- 8. Output beam polarization of x-ray lasers with transient inversion.- 9. Improved sub-10nm Ni-like lasing by varying the slope of the traveling-wave velocity.- 10. Temporal response of seeded XUV lasers under different amplification regimes- inversion density threshold.- 11. Self-photopumped x-ray lasers from elements in the Ne-like and Ni-like ionization state.- 12. Pump-Probe Experiment for Temporal Profile Measurement of Plasma X-ray laser.- 13. Capillary discharge X-ray Lasers: the Quest for sub-10nm Lasers.


Dr. Jorge Rocca
Professor
Electrical and Computer Engineering
Colorado State University
Fort Collins, CO 80523
USA

Dr. Carmen Menoni
Professor
Electrical and Computer Engineering
Colorado State University
Fort Collins, CO 80523
USA

Dr. Mario Marconi
Professor
Electrical and Computer Engineering
Colorado State University
Fort Collins, CO 80523
USA



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