Article citationsMore>>
Hirschel, M., Vadakkumbatt, V., Baker, N.P., Schweizer, F.M., Sankey, J.C., Singh, S., et al. (2024) Superfluid Helium Ultralight Dark Matter Detector. Physical Review D, 109, Article ID: 095011.
https://doi.org/10.1103/physrevd.109.095011
has been cited by the following article:
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TITLE:
Getters Reactants and Clean Technologies
AUTHORS:
Konstantin Chuntonov, Alexander Atlas
KEYWORDS:
Ultra-Pure Gases, Extremely High Vacuum, Getter Reactants, Rare Gases, Clean Dust-Free Technologies
JOURNAL NAME:
Journal of Materials Science and Chemical Engineering,
Vol.14 No.2,
February
10,
2026
ABSTRACT: Recent research in the field of gas sorption by Li-IIA alloys has improved our understanding of those processes in the gas-alloy system that influence taking practical decisions. Three features in the behavior of reactive macrobodies with a monolithic structure appeared to be significant and should lead to the replacement of a number of conventional sorption practices with new ones. These include the temporary resistance of the mentioned macrobodies to air (sorption pause), the ultra-fast decay of intermetallic phases according to the laws of corrosion (self-grinding), and the renewal of the reactive melt surface by sedimentation of reaction products with gases into the melt volume (self-cleaning). Applications of the mentioned phenomena for clean technologies are also discussed.