Analysis of the Factors Affecting the Realization of Lambda Transition Temperature of 4He

Author:

Yin L.,Lin P.,Zhao J.,Qi X.

Abstract

Analysis of the Factors Affecting the Realization of Lambda Transition Temperature of 4He Owing to the dramatic change in the thermal conductivity of 4He when its temperature crosses the transition of superfluid (HeI) and normalfluid (HeII), a sealed-cell with a capillary is used to realize the lambda transition temperature, Tλ. A small heat flow is controlled through the capillary of the sealed-cell so as to realize the coexistence of HeI and HeII and maintain the stay of HeI/HeII interface in the capillary. A stable and flat lambda transition temperature "plateau" is obtained. Because there is a depression effect of Tλ caused by the heat flow through the capillary, a series of heat flows and several temperature plateaus are made and an extrapolation is applied to determine Tλ with zero heat flow. A rhodium-iron resistance thermometer with series number A34 (RIRT A34) has been used in 24 Tλ -realization experiments to derive Tλ with a standard deviation of 0.022mK, which proves the stability and reproducibility of Tλ.

Publisher

Walter de Gruyter GmbH

Subject

Instrumentation,Control and Systems Engineering

Reference13 articles.

1. The International Temperature Scale of 1990 (ITS-90);H. Thomas;Metrologia,1990

2. Lambda transition of liquid helium as a thermometric fixed point;K. Hwang;Metrologia,1976

3. Study of the realization of 4He lambda transition point temperature by means of a small sealed cell;P. Lin;Cryogenics,1990

4. Studies on a sealed-cell lambda-point device for use in low temperature thermometry;P. Lin;Cryogenics,2002

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