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Electric Field Induced Interfacial InstabilitiesThe study of the interface in a charge-free, nonpolar, critical and near-critical binary fluid in the presence of an externally applied electric field is presented. At sufficiently large fields, the interface between the two phases of the binary fluid should become unstable and exhibit an undulation with a predefined wavelength on the order of the capillary length. As the critical point is approached, this wavelength is reduced, potentially approaching length-scales such as the correlation length or critical nucleation radius. At this point the critical properties of the system may be affected. In zero gravity, the interface is unstable at all long wavelengths in the presence of a field applied across it. It is conjectured that this will cause the binary fluid to break up into domains small enough to be outside the instability condition. The resulting pattern formation, and the effects on the critical properties as the domains approach the correlation length are of acute interest. With direct observation, laser light scattering, and interferometry, the phenomena can be probed to gain further understanding of interfacial instabilities and the pattern formation which results, and dimensional crossover in critical systems as the critical fluctuations in a particular direction are suppressed by external forces.
Document ID
19970000367
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Kusner, Robert E.
(NASA Lewis Research Center Cleveland,OH United States)
Min, Kyung Yang
(NASA Lewis Research Center Cleveland,OH United States)
Wu, Xiao-Lun
(Pittsburgh Univ. Pittsburgh, PA United States)
Onuki, Akira
(Kyoto Univ. Japan)
Date Acquired
August 17, 2013
Publication Date
September 1, 1996
Publication Information
Publication: Third Microgravity Fluid Physics Conference
Subject Category
Inorganic And Physical Chemistry
Accession Number
97N10334
Funding Number(s)
CONTRACT_GRANT: NAG3-2789
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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