Publication:
Vibrational cooling of spin-stretched dimer states by He buffer gas: quantum calculations for Li(2)(a (3)Sigma(+)(u)) at ultralow energies

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Bovino, S.
Bodo, E.
Gianturco, F. A.

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NO

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Abstract

The interaction between the triplet state of the lithium dimer, (7)Li(2), with (4)He is obtained from accurate ab initio calculations where the vibrational dependence of the potential is newly computed. Vibrational quenching dynamics within a coupled-channel quantum treatment is carried out at ultralow energies, and large differences in efficiency as a function of the initial vibrational state of the targets are found as one compares the triplet results with those of the singlet state of the same target.

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American Institute of Physics (AIP) Publishing

Subject

Physical chemistry, Applied physics

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Journal of Chemical Physics

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DOI

10.1063/1.2933405

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GoalOpen Access
07 - Affordable and Clean Energy
Renewable energy solutions are becoming cheaper, more reliable and more efficient every day.Our current reliance on fossil fuels is unsustainable and harmful to the planet, which is why we have to change the way we produce and consume energy. Implementing these new energy solutions as fast as possible is essential to counter climate change, one of the biggest threats to our own survival.

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