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- W2050754429 abstract "In methane hydrate the dominant peak in the density of states above 3meV represents a rattling mode of the guest molecule CH4 in the large ice cages. This mode shifts from 6.7meV at T=4.5K to T=30K to 7.14meV with conversion of CH4 guest molecules into the tunneling ground state. The less symmetric angular density distribution ΨΨ* in the excited rotational state compared to the ground state allows the methane to fit better in the orientation dependent cage potential surface. This leads to a larger average distance to the cage-forming molecules with a weaker potential and a reduced rattling energy. A two state single particle model with characteristic rattling energies of 5.20meV for pure T-methane and 7.3meV for pure A-methane weighted by the population factors can fit the data." @default.
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- W2050754429 date "2006-12-04" @default.
- W2050754429 modified "2023-09-27" @default.
- W2050754429 title "Methane clathrate: CH4 quantum rotor state dependent rattling potential" @default.
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- W2050754429 doi "https://doi.org/10.1063/1.2400031" @default.
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