Published 1993 | Version v1
Miscellaneous

The effect of confinement on liquid helium near the lambda line

Description

This thesis is the compilation of several projects relevant to the behavior of confined liquid helium near the λ-line. The first project described is the development of two new high resolution thermometers optimized for specific heat studies of helium confined in pores. One of the thermometers is a superconductive transition thermometer (STT). The STT has a temperature resolution of about 5nK. The other high resolution thermometer described is a magnetic susceptibility thermometer. This thermometer measures the magnetization of copper ammonium bromide (CAB) using a SQUID magnetometer. The CAB thermometer has an observed sensitivity of about 20nK. Suggestions for improvements in both thermometers are made. Simulation work on the temperature profile of a thermal conductivity cell near Tλ is described. The simulations are compared with the experimental results, and a careful study of the stability of the numerics is described. The study of helium confined into pores and films is described next. Both previous theoretical and experimental work on finite size effects in liquid helium are described. The geometry provided by glass capillary arrays is analyzed to determine what would be observed when the specific heat of helium confined to the arrays is measured. Finally, I describe my measurements of the isobaric thermal expansion coefficient βP of 4He confined in an aerogel for several isobars along the λ-line. βP is an asymptotically linear function of CP near the superfluid transition temperature Tc. Therefore, fits to power laws in t triple-bond T/Tc - 1 give the specific heat exponents α and α' and amplitude ratio A'/A. Such fits gave different exponents α ∼ -0.6 and α' ∼ -1.0 above and below Tc

Availability note (English)

Available from University Microfilms, P.O. Box 1764, Ann Arbor, MI 48106 (United States). Order No. 93-34,871.

Additional details

Publishing Information

Publisher
Univ. of California.
Imprint Place
Santa Barbara, CA (United States)
Imprint Pagination
365 p.