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Recombination of spin polarized atomic hydrogen adsorbed on a dilute 3He-4He mixture

We have been searching for two-dimensional (2-D) superfluidity of spin-polarized atomic hydrogen (H arrow down) adsorbed on liquid helium surface. We have investigated H arrow down adsorbed on 3He-4He mixtures instead of pure 4He because the thermal coupling of H arrow down to the mixtures is strong... Full description

Published: New York, Kluwer Academic/Plenum Publishers, 2000
Kongresse: International Symposium on Quantum Fluids and Solids 2000 2000.06.06-2000.06.11 Minneapolis, MN, US
QFS 2000 2000.06.06-2000.06.11 Minneapolis, MN, US
International Symposium on Quantum Fluids and Solids 2000.06.06-2000.06.11 Minneapolis, MN, US
QFS 2000 2000.06.06-2000.06.11 Minneapolis, MN, US
Contained in: Journal of Low Temperature Physics Vol. 121, No. 5-6 (2000), p. 737-742
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ISSN: 0022-2291
Additional Keywords: ADSORPTION
ATOMARER-WASSERSTOFF
FLUESSIGHELIUM
OBERFLAECHENBESCHAFFENHEIT
OBERFLAECHENREKOMBINATION
PARAMAGNETISCHE-RESONANZ
SPINPOLARISATION
SUPRAFLUIDITAET
Notes: Copyright: Metadaten: TEMA, Copyright WTI-Frankfurt eG
Copyright: (C) Alle Rechte beim Herausgeber
Physical Description: 6 Seiten, 15 Quellen
PPN (Catalogue-ID): WTI038053764
Note: WTI TEMA DB
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Internes Format
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520 |a We have been searching for two-dimensional (2-D) superfluidity of spin-polarized atomic hydrogen (H arrow down) adsorbed on liquid helium surface. We have investigated H arrow down adsorbed on 3He-4He mixtures instead of pure 4He because the thermal coupling of H arrow down to the mixtures is stronger than 4He. ESR at 129 GHz was carried out to detect H arrow down at 4.5 T by using the Fabri-Perot confocal cavity with the cold spot located at the confocal point and thus the 2-D H arrow down signal was effectively detected. We investigated the two-body bulk and surface recombination processes of H arrow down on a 3% 3He 3He-4He mixture film. From the analysis of the surface recombination process, we found the adsorption energy of H arrow down was a 0.6 K for the mixture film in the temperature range between 120 mK and 250 mK, greater than the 0.3-0.4 K found previously for pure 3He and a 67% 3He 3He-4He mixture. 
653 4 |a ATOMARER-WASSERSTOFF 
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653 4 |a SUPRAFLUIDITAET 
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