Dynamics of molecular rotors in bulk superfluid helium

Author:

Milner Alexander A.1ORCID,Apkarian V. A.2ORCID,Milner Valery1ORCID

Affiliation:

1. Department of Physics and Astronomy, The University of British Columbia, Vancouver, Canada.

2. Department of Chemistry, University of California, Irvine, California 92697, USA.

Abstract

Molecules immersed in liquid helium are excellent probes of superfluidity. Their electronic, vibrational, and rotational dynamics provide valuable clues about the superfluid at the nanoscale. Here we report on the experimental study of the laser-induced rotation of helium dimers inside the superfluid 4 He bath at variable temperature. The coherent rotational dynamics of He 2 is initiated in a controlled way by ultrashort laser pulses and tracked by means of time-resolved laser-induced fluorescence. We detect the decay of rotational coherence on the nanosecond time scale and investigate the effects of temperature on the decoherence rate. The observed temperature dependence suggests a nonequilibrium evolution of the quantum bath, accompanied by the emission of the wave of second sound. The method offers ways of studying superfluidity with molecular nanoprobes under variable thermodynamic conditions.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference53 articles.

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2. Theory of the Superfluidity of Helium II

3. Determination of the velocity of propagation of the second sound in helium II;Peshkov V. S.;J. Phys. USSR,1946

4. Second Sound in Liquid Helium II

5. Excitations in the quantum liquid4He: A review

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