Atomically thin superfluid helium films on solid hydrogen

We have measured both adsorption isotherms and third-sound resonance of atomically thin {sup 4}He films on solid hydrogen. We find helium more weakly bound to a hydrogen surface than to other rare-gas surfaces, with a van der Waals cofficient of 4.6{plus minus}0.4 K (layers){sup 3}. We have also mea...

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Published in:Physical review letters Vol. 67; no. 9; pp. 1118 - 1121
Main Authors: SHIRRON, P. J, MOCHEL, J. M
Format: Journal Article
Language:English
Published: Ridge, NY American Physical Society 26-08-1991
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Abstract We have measured both adsorption isotherms and third-sound resonance of atomically thin {sup 4}He films on solid hydrogen. We find helium more weakly bound to a hydrogen surface than to other rare-gas surfaces, with a van der Waals cofficient of 4.6{plus minus}0.4 K (layers){sup 3}. We have also measured third sound, at 0.18 K, down to a total helium coverage of 0.45{plus minus}0.01 atomic layer, indicating an inert coverage at {ital T}=0 K of 0.29 atomic layer or less. In common with other weak-binding substrates we also see depressions in third-sound velocity near half-layer intervals.
AbstractList We have measured both adsorption isotherms and third-sound resonance of atomically thin {sup 4}He films on solid hydrogen. We find helium more weakly bound to a hydrogen surface than to other rare-gas surfaces, with a van der Waals cofficient of 4.6{plus minus}0.4 K (layers){sup 3}. We have also measured third sound, at 0.18 K, down to a total helium coverage of 0.45{plus minus}0.01 atomic layer, indicating an inert coverage at {ital T}=0 K of 0.29 atomic layer or less. In common with other weak-binding substrates we also see depressions in third-sound velocity near half-layer intervals.
Author SHIRRON, P. J
MOCHEL, J. M
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  surname: SHIRRON
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  organization: Univ. Illinois at Urbana-Champaign, dep. physics, Urbana IL 61801, United States
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  givenname: J. M
  surname: MOCHEL
  fullname: MOCHEL, J. M
  organization: Univ. Illinois at Urbana-Champaign, dep. physics, Urbana IL 61801, United States
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Issue 9
Keywords Liquid solid interface
Support
Hydrogen
Chemical bond
Crystals
Superfluid
Kosterlitz Thouless transition
Coverage rate
Experimental study
Helium
Thin film
Sound velocity
Adsorption
Van der Waals interaction
Isotherm
Chemical potential
Third sound
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Snippet We have measured both adsorption isotherms and third-sound resonance of atomically thin {sup 4}He films on solid hydrogen. We find helium more weakly bound to...
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StartPage 1118
SubjectTerms 08 HYDROGEN
080800 - Hydrogen- Properties & Composition
640450 - Fluid Physics- Superfluidity
ADSORPTION ISOTHERMS
CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
Condensed matter: structure, mechanical and thermal properties
ELEMENTS
EVEN-EVEN NUCLEI
Exact sciences and technology
Films (including physical adsorption)
FLUIDS
HELIUM 4
HELIUM II
HELIUM ISOTOPES
HYDROGEN
ISOTHERMS
ISOTOPES
LIGHT NUCLEI
NONMETALS
NUCLEI
Physics
QUANTUM FLUIDS
Quantum fluids and solids; liquid and solid helium
SORPTIVE PROPERTIES
STABLE ISOTOPES
SURFACE PROPERTIES
THIN FILMS
THIRD SOUND
VAN DER WAALS FORCES
WETTABILITY
Title Atomically thin superfluid helium films on solid hydrogen
URI https://www.ncbi.nlm.nih.gov/pubmed/10045080
https://search.proquest.com/docview/1859283689
https://www.osti.gov/biblio/5220873
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