A Model for Third Sound Attenuation in Thick He Films
نویسندگان
چکیده
Third sound attenuation in thick He films has been observed to be much greater than predictions based on known mechanisms. We propose a possible mechanism for this observed high attenuation. Pinned vortices, possibly created when the superfluid transition is traversed, undergo driven oscillations in the third sound wave flow field. The dissipation is caused by two related effects. The first is due to the mutual friction between the vortex cores and the normal component. The second, larger contribution, is due to the drag experienced by a vortex-induced surface dimple. Variations in vortex density explain quite naturally the observed lack of reproducibility in attenuation measurements. A vortex density on the order of 10 m 2 is required to account for dissipation reported in several experiments. We discuss the temperature, frequency and thickness dependence of the dissipation. The proposed model is also applicable to a vortex contribution to fourth sound attenuation. If third sound attenuation is indeed a signature of a very dense array of pinned vorticity, then our conception of a homogeneous superfluid film needs considerable alteration.
منابع مشابه
Effect of 3 He on Third Sound Attenuation in Thick 4 He Films
We have performed measurements of third sound attenuation in thick films of superfluid He in the presence of small amounts of He. The attenuation due to He appears to depend linearly on the number density of He atoms in the film. We discuss the results in context of a recently proposed mechanism where the attenuation is caused by the interaction of the excitations in helium with the trapped vor...
متن کاملMeasurements of Attenuation of Third Sound: Evidence of Trapped Vorticity in Thick Films of Superfluid
We present results of a study of third sound in thick He films in circular resonator geometry. Frequency and line shapes of third sound resonances are measured for temperatures between 0.3 and 2.1 K in saturated films approximately 30 nm thick. From these measurements we calculate the attenuation of the sound. We find that the attenuation at a given temperature is a function of history of the f...
متن کاملOne-dimensional Excitations in Superfluid He and He-He Mixture Films Adsorbed in Porous Materials
(Dated: February 1, 2008) A normal-fluid component varying as T is observed at very low temperatures in superfluid He and He-He mixture films adsorbed in alumina powder. The normal fluid appears to arise from thermally excited third sound that has one-dimensional propagation characteristics. A Landau model of third sound excitations in an infinite cylindrical pore by Saam and Cole provides good...
متن کاملCapacitive Generation and Detection of Third Sound Resonances in Saturated Superfluid <Superscript>4</Superscript>He Films
We report on the operation of a third sound resonator for use with saturated superfluid helium films. Measurements of superfluid 4He third sound velocities as a function of film thickness are described for films ranging in thickness from 26 nm to 85 nm. The film resides on the gold-covered surface of a 38 mm diameter copper disk, which has been machined with a diamond-tipped cutting tool, and h...
متن کاملJ un 1 99 6 Phase diagram of the 2 D 4 He in the density - temperature plane
Thin 4 He films adsorbed to weakly attractive substrates form nearly 2D layers. We describe the vortices in 2D superfluid 4 He like quasiparticles. With the aid of a variational many-body calculation we estimate their inertial mass and describe their interactions with the 4 He particles and other vortices. Third sound measurements revealed anomalous behavior below the BKT-phase transition tempe...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2002