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research article

Aggregation of solutes in bosonic versus fermionic quantum fluids

Feinberg, Alexandra J.
•
Verma, Deepak
•
O'Connell-Lopez, Sean M. O.
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December 1, 2021
Science Advances

Quantum fluid droplets made of helium-3 (He-3) or helium-4 (He-4) isotopes have long been considered as ideal cryogenic nanolabs, enabling unique ultracold chemistry and spectroscopy applications. The droplets were believed to provide a homogeneous environment in which dopant atoms and molecules could move and react almost as in free space but at temperatures close to absolute zero. Here, we report ultrafast x-ray diffraction experiments on xenon-doped He-3 and He-4 nanodroplets, demonstrating that the unavoidable rotational excitation of isolated droplets leads to highly anisotropic and inhomogeneous interactions between the host matrix and enclosed dopants. Superfluid He-4 droplets are laced with quantum vortices that trap the embedded particles, leading to the formation of filament-shaped clusters. In comparison, dopants in He-3 droplets gather in diffuse, ring-shaped structures along the equator. The shapes of droplets carrying filaments or rings are direct evidence that rotational excitation is the root cause for the inhomogeneous dopant distributions.

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Type
research article
DOI
10.1126/sciadv.abk2247
Web of Science ID

WOS:000768285000002

Author(s)
Feinberg, Alexandra J.
Verma, Deepak
O'Connell-Lopez, Sean M. O.
Erukala, Swetha
Tanyag, Rico Mayro P.
Pang, Weiwu
Saladrigas, Catherine A.
Toulson, Benjamin W.
Borgwardt, Mario
Shivaram, Niranjan
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Date Issued

2021-12-01

Publisher

AMER ASSOC ADVANCEMENT SCIENCE

Published in
Science Advances
Volume

7

Issue

50

Article Number

eabk2247

Subjects

Multidisciplinary Sciences

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Science & Technology - Other Topics

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superfluid-helium

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liquid

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visualization

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spectroscopy

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molecules

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impurity

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clusters

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LUXS  
Available on Infoscience
March 28, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/186755
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