paper

Mass coupling and ^3$He in a torsion pendulum

arXiv:1010.5193 · doi:10.1007/s10909-010-0295-z

Abstract

We present results of the and period shift, , for He confined in a 98% nominal open aerogel on a torsion pendulum. The aerogel is compressed uniaxially by 10% along a direction aligned to the torsion pendulum axis and was grown within a 400 m tall pancake (after compression) similar to an Andronikashvili geometry. The result is a high pendulum able to resolve and mass coupling of the impurity-limited He over the whole temperature range. After measuring the empty cell background, we filled the cell above the critical point and observe a temperature dependent period shift, , between 100 mK and 3 mK that is 2.9 of the period shift (after filling) at 100 mK. The due to the He decreases by an order of magnitude between 100 mK and 3 mK at a pressure of bar. We compare the observable quantities to the corresponding calculated and period shift for bulk He.

8 pages, 3 figures

References in corpus (5)

Cited by in corpus (2)