4.8 Article

Anisotropic photoemission time delays close to a Fano resonance

Journal

NATURE COMMUNICATIONS
Volume 9, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-03009-1

Keywords

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Funding

  1. ERC within European Union [ERC-2012-ADG_20120216]
  2. NCCR MUST - Swiss National Science Foundation
  3. DFG QUTIF grant [IV 152/6-1]
  4. TAMOP NSF [1607588]
  5. UCF fundings
  6. ERC advanced grant PALP [339253]
  7. Knut and Alice Wallenberg Foundation
  8. Swedish Research Council
  9. Swedish Foundation for Strategic Research
  10. Swedish Research Council [2016-03789, 2014-03724]
  11. European Research Council under the European Union's Seventh Framework Programme/ERC [290853 XCHEM]
  12. MINECO [FIS2013-42002-R, FIS2016-77889-R]
  13. European COST Action XLIC [CM1204]
  14. Direct For Mathematical & Physical Scien [1607588] Funding Source: National Science Foundation

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Electron correlation and multielectron effects are fundamental interactions that govern many physical and chemical processes in atomic, molecular and solid state systems. The process of autoionization, induced by resonant excitation of electrons into discrete states present in the spectral continuum of atomic and molecular targets, is mediated by electron correlation. Here we investigate the attosecond photoemission dynamics in argon in the 20-40 eV spectral range, in the vicinity of the 3s(-1)np autoionizing resonances. We present measurements of the differential photoionization cross section and extract energy and angle-dependent atomic time delays with an attosecond interferometric method. With the support of a theoretical model, we are able to attribute a large part of the measured time delay anisotropy to the presence of autoionizing resonances, which not only distort the phase of the emitted photoelectron wave packet but also introduce an angular dependence.

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