The Hypertriton in Effective Field Theory
Abstract
Doublet Lambda d scattering and the hypertriton are studied in the framework of an effective field theory for large scattering lengths. As in the triton case, consistent renormalization requires a one-parameter three-body force at leading order whose renormalization group evolution is governed by a limit cycle. Constraining unknown parameters from symmetry considerations and the measured binding energy of the hypertriton, we calculate the low-energy phase shifts for doublet Lambda d scattering. For the low-energy parameters, we find a_{Lambda d}=(16.8^{+4.4}_{-2.4}) fm and r_{Lambda d}=(2.3 +/- 0.3) fm, where the errors are due to the uncertainty in the hypertriton binding energy. Since the hypertriton is extremely shallow, low-energy three-body observables in this channel are very insensitive to the exact values of the Lambda N low-energy parameters.
Keywords
Cite
@article{arxiv.nucl-th/0110031,
title = {The Hypertriton in Effective Field Theory},
author = {H. -W. Hammer},
journal= {arXiv preprint arXiv:nucl-th/0110031},
year = {2009}
}
Comments
16 pages, revtex4, 5 ps figures, reference added, typos in appendix A corrected