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Spin-rotation coupling in p-wave Feshbach resonances

Quantum Gases 2019-12-05 v2 Atomic Physics

Abstract

We report evidence for spin-rotation coupling in pp-wave Feshbach resonances in an ultracold mixture of fermionic 6^6Li and bosonic 133^{133}Cs lifting the commonly observed degeneracy of states with equal absolute value of orbital-angular-momentum projection on the external magnetic field. By employing magnetic field dependent atom-loss spectroscopy we find triplet structures in pp-wave resonances. Comparison with coupled-channel calculations, including contributions from both spin-spin and spin-rotation interactions, yields a spin-rotation coupling parameter γ=0.566(50)×103|\gamma|=0.566(50)\times10^{-3}. Our findings highlight the potential of Feshbach resonances in revealing subtle molecular couplings and providing precise information on electronic and nuclear wavefunctions, especially at short internuclear distance. The existence of a non-negligible spin-rotation splitting may have consequences for future classifications of pp-wave superfluid phases in spin-polarized fermions.

Keywords

Cite

@article{arxiv.1910.12011,
  title  = {Spin-rotation coupling in p-wave Feshbach resonances},
  author = {Bing Zhu and Stephan Häfner and Binh Tran and Manuel Gerken and Juris Ulmanis and Eberhard Tiemann and Matthias Weidemüller},
  journal= {arXiv preprint arXiv:1910.12011},
  year   = {2019}
}

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5 pages, welcome comments