AI Article Synopsis

  • Asymmetric spectral line shapes indicate interference between a quasi-bound state and a continuum of states, commonly seen in multichannel systems like photoionization or molecular scattering.
  • The research demonstrates that by examining how the angular dependence of the cross section changes, asymmetric Fano profiles can be detected even in single channel shape resonance scenarios.
  • Experiments on elastic collisions between metastable helium and deuterium reveal a peak shift in the resonance profile with detection angle, aligning well with theoretical predictions, and allow for the extraction of the relative phase that causes these characteristic profiles.

Article Abstract

Asymmetric spectral line shapes are a hallmark of interference of a quasi-bound state with a continuum of states. Such line shapes are well known for multichannel systems, for example, in photoionization or Feshbach resonances in molecular scattering. On the other hand, in resonant single channel scattering, the signature of such interference may disappear due to the orthogonality of partial waves. Here, we show that probing the angular dependence of the cross section allows us to unveil asymmetric Fano profiles also in a single channel shape resonance. We observe a shift in the peak of the resonance profile in the elastic collisions between metastable helium and deuterium molecules with detection angle, in excellent agreement with theoretical predictions from full quantum scattering calculations. Using a model description for the partial wave interference, we can disentangle the resonant and background contributions and extract the relative phase responsible for the characteristic Fano-like profiles from our experimental measurements.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8668881PMC
http://dx.doi.org/10.1038/s41467-021-27556-2DOI Listing

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