4.8 Article

Ultraviolet surprise: Efficient soft x-ray high-harmonic generation in multiply ionized plasmas

期刊

SCIENCE
卷 350, 期 6265, 页码 1225-1231

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aac9755

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资金

  1. Army Research Office [WN11NF-13-1-0259]
  2. NSF PFI AIR
  3. U.S. Department of Energy (DOE) [DE-SC0008803]
  4. Marie Curie International Outgoing Fellowship within the EU Seventh Framework Programme for Research and Technological Development under REA [328334]
  5. NSF [PHY-1125844, PHY-1068706]
  6. AFOSR MURI Mathematical Modeling and Experimental Validation of Ultrafast Light-Matter Coupling associated with Filamentation in Transparent Media grant [FA9550-10-1-0561]
  7. Ministry of Science and Technology, Taiwan [102-2112-M-007-025-MY3]
  8. DOE Office of Fusion Energy, HED Laboratory Plasmas program [AT5015033]
  9. DOE, National Nuclear Security Administration [DE-AC52-07NA27344, LLNL-JRNL-676693]
  10. Junta de Castilla y Leon [SA116U13, UIC016]
  11. MINECO [FIS2013-44174-P]
  12. U.S. Department of Energy, Division of Chemical Sciences, Atomic, Molecular and Optical Sciences Program
  13. Direct For Mathematical & Physical Scien
  14. Division Of Physics [1125844] Funding Source: National Science Foundation
  15. U.S. Department of Energy (DOE) [DE-SC0008803] Funding Source: U.S. Department of Energy (DOE)

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High-harmonic generation is a universal response of matter to strong femtosecond laser fields, coherently upconverting light to much shorter wavelengths. Optimizing the conversion of laser light into soft x-rays typically demands a trade-off between two competing factors. Because of reduced quantum diffusion of the radiating electron wave function, the emission from each species is highest when a short-wavelength ultraviolet driving laser is used. However, phase matching-the constructive addition of x-ray waves from a large number of atoms-favors longer-wavelength mid-infrared lasers. We identified a regime of high-harmonic generation driven by 40-cycle ultraviolet lasers in waveguides that can generate bright beams in the soft x-ray region of the spectrum, up to photon energies of 280 electron volts. Surprisingly, the high ultraviolet refractive indices of both neutral atoms and ions enabled effective phase matching, even in a multiply ionized plasma. We observed harmonics with very narrow linewidths, while calculations show that the x-rays emerge as nearly time-bandwidth-limited pulse trains of similar to 100 attoseconds.

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