Excitations in a thin liquid 4He film from inelastic neutron scattering

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1996
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Clements, Bradford E.
Godfrin, Henri
Krotscheck, Eckhard
Lauter, Hans J.
Passiouk, Valeria
Tymczak, C. J.
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Physical Review B. 1996, 56(18), pp. 12242-12252. ISSN 1098-0121. eISSN 1550-235X. Available under: doi: 10.1103/PhysRevB.53.12242
Zusammenfassung

We perform a thorough analysis of the experimental dynamic structure function measured by inelastic neutron scattering for a low-temperature (T=0.65 K) four-layer liquid 4He film. The results are interpreted in light of recent theoretical calculations of the (nonvortex) excitations in thin liquid Bose films. The experimental system consists of four outer liquid layers, adsorbed to two solid inner 4He layers, which are themselves adsorbed to a graphite substrate. Relatively intense surface (ripplon) and bulklike modes are observed. The analysis of the experimental data gives strong evidence for still other modes and supports the long-standing theoretical predictions of layerlike modes (layer phonons) associated with excitations propagating primarily within the liquid layers comprising the film. The results of the analysis are consistent with the occurrence of level crossings between modes, and the existence of a layer modes for which the theory predicts will propagate in the vicinity of the solid-liquid interface. The theory and experiment agree on the detailed nature of the ripplon; its dispersion at low momenta, its fall off in intensity at intermediate momenta, and the level crossings at high momentum. Similar to experiment, the theory yields an intense mode in the maxon-roton region which is intrepreted as the formation of the bulklike excitation.

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ISO 690CLEMENTS, Bradford E., Henri GODFRIN, Eckhard KROTSCHECK, Hans J. LAUTER, Paul LEIDERER, Valeria PASSIOUK, C. J. TYMCZAK, 1996. Excitations in a thin liquid 4He film from inelastic neutron scattering. In: Physical Review B. 1996, 56(18), pp. 12242-12252. ISSN 1098-0121. eISSN 1550-235X. Available under: doi: 10.1103/PhysRevB.53.12242
BibTex
@article{Clements1996Excit-5348,
  year={1996},
  doi={10.1103/PhysRevB.53.12242},
  title={Excitations in a thin liquid 4He film from inelastic neutron scattering},
  number={18},
  volume={56},
  issn={1098-0121},
  journal={Physical Review B},
  pages={12242--12252},
  author={Clements, Bradford E. and Godfrin, Henri and Krotscheck, Eckhard and Lauter, Hans J. and Leiderer, Paul and Passiouk, Valeria and Tymczak, C. J.}
}
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    <dcterms:abstract xml:lang="eng">We perform a thorough analysis of the experimental dynamic structure function measured by inelastic neutron scattering for a low-temperature (T=0.65 K) four-layer liquid 4He film. The results are interpreted in light of recent theoretical calculations of the (nonvortex) excitations in thin liquid Bose films. The experimental system consists of four outer liquid layers, adsorbed to two solid inner 4He layers, which are themselves adsorbed to a graphite substrate. Relatively intense surface (ripplon) and bulklike modes are observed. The analysis of the experimental data gives strong evidence for still other modes and supports the long-standing theoretical predictions of layerlike modes (layer phonons) associated with excitations propagating primarily within the liquid layers comprising the film. The results of the analysis are consistent with the occurrence of level crossings between modes, and the existence of a layer modes for which the theory predicts will propagate in the vicinity of the solid-liquid interface. The theory and experiment agree on the detailed nature of the ripplon; its dispersion at low momenta, its fall off in intensity at intermediate momenta, and the level crossings at high momentum. Similar to experiment, the theory yields an intense mode in the maxon-roton region which is intrepreted as the formation of the bulklike excitation.</dcterms:abstract>
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