Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10695247 | Advances in Space Research | 2005 | 5 Pages |
Abstract
We present measurements of the thermal conductivity λ(t, P, L) = l/Ï(t, P, L) near the superfluid transition of 4He at saturated vapor pressure and confined in cylindrical geometries with radii L = 0.5 and 1.0 μm (t â¡Â T/Tλ(P) â 1). For L = 1.0 μm measurements at six pressures P are presented. At and above Tλ the data are consistent with a universal scaling function F(X) = (L/ξo)x/ν(Ï/Ï0), X = (L/ξo)1/νt valid for all P (Ï0 and x are the pressure-dependent amplitude and effective exponent of the bulk resistivity Ï(t, P, â) = Ï0tx and ξ = ξ0tâν is the correlation length). Indications of breakdown of scaling and universality are observed below Tλ.
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Physical Sciences and Engineering
Earth and Planetary Sciences
Space and Planetary Science
Authors
Edgar Genio, Daniel Murphy, Guenter Ahlers, Fengchuan Liu, Yuanming Liu,