4.5 Article

Multiple echoes in beam spin-echo spectroscopy and their effect on measurements of ultra-fast dynamics

期刊

JOURNAL OF PHYSICS-CONDENSED MATTER
卷 34, 期 34, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1361-648X/ac7765

关键词

helium spin-echo; atomic beams; surface scattering

资金

  1. European Commission
  2. European Research Council [772228]
  3. Research Councils UK
  4. Engineering and Physical Sciences Research Council New Horizons [EP/V048589/1]
  5. European Research Council (ERC) [772228] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

The study discovers that there are four spin-echoes which need to be considered in helium (He-3) spin-echo measurements, and even in the case of elastic scattering, these additional echoes can lead to oscillations that could be mistakenly interpreted as being due to inelastic scattering. By propagating the He-3 through the measured magnetic field profile of the apparatus and considering the geometry of the machine, it is possible to accurately simulate the experimental data and separate the effect of these additional echoes from inelastic scattering events.
Helium (He-3) spin-echo is a powerful experimental technique used to probe ultra-fast atomic scale surface dynamics. The analysis of these measurements is typically performed assuming there is only a single spin-echo condition, expected to produce a constant signal for pure elastic scattering, a monotonically decaying signal for quasi-elastic scattering and oscillations from inelastic scattering events. In the present work, we show that there are in fact four spin-echoes which must be correctly accounted for, and that even in the case of elastic scattering these additional echoes lead to oscillations which could mistakenly be interpreted as being due to inelastic scattering. We demonstrate that it is possible to accurately simulate the experimental data by propagating the He-3 through the measured magnetic field profile of the apparatus and considering the geometry of the machine, allowing the effect of these additional echoes to be disentangled from inelastic scattering events in future He-3 spin-echo measurements.

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