arXiv · physics/0207002
Formation of atomic tritium clusters and condensates
Abstract
We present an extensive study of the static and dynamic properties of systems of spin-polarized tritium atoms. In particular, we calculate the two-body |F,m_F>=|0,0> s-wave scattering length and show that it can be manipulated via a Feshbach resonance at a field strength of about 870G. Such a resonance might be exploited to make and control a Bose-Einstein condensate of tritium in the |0,0> state. It is further shown that the quartet tritium trimer is the only bound hydrogen isotope and that its single vibrational bound state is a Borromean state. The ground state properties of larger spin-polarized tritium clusters are also presented and compared with those of helium clusters.
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D. Blume, B. D. Esry, C. H. Greene, N. N. Klausen, G. J. Hanna. 2002-06-28. Formation of atomic tritium clusters and condensates. https://doi.org/10.1103/physrevlett.89.163402
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