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Soft X-Ray Second Harmonic Generation as an Interfacial Probe: Article No. 023901

  • Steven Christensen
  • , R. Lam
  • , S. Raj
  • , T. Pascal
  • , C. Pemmaraju
  • , L. Foglia
  • , A. Simoncig
  • , N. Fabris
  • , P. Miotti
  • , C. Hull
  • , A. Rizzuto
  • , J. Smith
  • , R. Mincigrucci
  • , C. Masciovecchio
  • , A. Gessini
  • , E. Allaria
  • , G. Ninno
  • , B. Diviacco
  • , E. Roussel
  • , S. Spampinati
  • G. Penco, S. Mitri, M. Trovo, M. Danailov, D. Sokaras, T.-C. Weng, M. Coreno, L. Poletto, W. Drisdell, D. Prendergast, L. Giannessi, E. Principi, D. Nordlund, R. Saykally, C. Schwartz
  • Lawrence Berkeley National Laboratory
  • University of California at Berkeley
  • SLAC National Accelerator Laboratory
  • Elettra Sincrotrone Trieste
  • National Research Council
  • University of Padua
  • University of Nova Gorica
  • Center for High Pressure Science & Technology Advanced Research
  • Institute of Structure of Matter
  • National Agency for New Technologies, Energy & Sustainable Economic Development

Research output: Contribution to journalArticlepeer-review

77 Scopus Citations

Abstract

Nonlinear optical processes at soft x-ray wavelengths have remained largely unexplored due to the lack of available light sources with the requisite intensity and coherence. Here we report the observation of soft x-ray second harmonic generation near the carbon K edge (~284 eV) in graphite thin films generated by high intensity, coherent soft x-ray pulses at the FERMI free electron laser. Our experimental results and accompanying first-principles theoretical analysis highlight the effect of resonant enhancement above the carbon K edge and show the technique to be interfacially sensitive in a centrosymmetric sample with second harmonic intensity arising primarily from the first atomic layer at the open surface. This technique and the associated theoretical framework demonstrate the ability to selectively probe interfaces, including those that are buried, with elemental specificity, providing a new tool for a range of scientific problems.
Original languageAmerican English
Number of pages6
JournalPhysical Review Letters
Volume120
Issue number2
DOIs
StatePublished - 2018

NLR Publication Number

  • NREL/JA-5K00-70998

Keywords

  • interfaces
  • nonlinear optics
  • surfaces
  • x-ray techniques

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