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- W2332534871 abstract "Direct observation of superfluid response in para-hydrogen (p-H(2)) remains a challenge because of the need for a probe that would not induce localization and a resultant reduction in superfluid fraction. Earlier work [H. Li, R. J. Le Roy, P.-N. Roy, and A. R. W. McKellar, Phys. Rev. Lett. 105, 133401 (2010)] has shown that carbon dioxide can probe the effective inertia of p-H(2) although larger clusters show a lower superfluid response due to localization. It is shown here that the lighter carbon monoxide probe molecule allows one to measure the effective inertia of p-H(2) clusters while maintaining a maximum superfluid response with respect to dopant rotation. Microwave spectroscopy and a theoretical analysis based on Feynman path-integral simulations are used to support this conclusion." @default.
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- W2332534871 date "2012-06-19" @default.
- W2332534871 modified "2023-10-05" @default.
- W2332534871 title "Persistent Molecular Superfluid Response in Doped Para-Hydrogen Clusters" @default.
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- W2332534871 doi "https://doi.org/10.1103/physrevlett.108.253402" @default.
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