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Effect of the Magnetic Order on 3 | He Crystals

Solid3 He orders magnetically into two different phases below the Néel transition depending on the magnetic field ( U2D2 or low field phase below 450 mT and CNAF or high field phase above 450 mT). We have performed measurements of the growth velocities and determined the step energies for different... Full description

Main Author: Bueno, J.
Contributors: Blaauwgeers, R. | Author
Parshin, Y. | Author
Jochemsen, R. | Author
Contained in: Journal of Low Temperature Physics Dordrecht : Springer Science + Business Media B.V Vol. 150, No. 3/4 (2008), p. 306-310
Journal Title: Journal of Low Temperature Physics
Fulltext access:
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Links: Volltext (dx.doi.org)
ISSN: 1573-7357
Additional Keywords: Crystal growth
OriginalPaper
Quantum solids
DOI: 10.1007/s10909-007-9551-2
Language: English
Notes: Y.A. Parshin, permanently at the P.L. Kapitza Institute, Kosygina 2, Moscow 119334, Russia.
Physical Description: Online-Ressource
ID (e.g. DOI, URN): 10.1007/s10909-007-9551-2
s10909-007-9551-2
PPN (Catalogue-ID): SPR030947103
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520 |a Solid3 He orders magnetically into two different phases below the Néel transition depending on the magnetic field ( U2D2 or low field phase below 450 mT and CNAF or high field phase above 450 mT). We have performed measurements of the growth velocities and determined the step energies for different facets in both phases at B=0 T and B=2 T. It was found that the growth rate is much faster at B=2 T than at zero magnetic field. We conclude that the interface couples strongly to the crystal lattice at zero magnetic field while it seems to couple weakly at B=2 T. The ordering of the spins in the solid clearly affects the growth velocity of the crystals by an order of magnitude. 
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653 |a Crystal growth 
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