English

Loss of Conformality in Efimov Physics

Quantum Gases 2018-12-18 v1

Abstract

The loss of conformal invariance in Efimov physics is due to the merger and disappearance of an infrared and an ultraviolet fixed point of a three-body renormalization group flow as the spatial dimension dd is varied. In the case of identical bosons at unitarity, it is known that there are two critical dimensions d1=2.30d_{\rm 1}=2.30 and d2=3.76d_{\rm 2}=3.76 at which there is loss of conformality. For d<d1d<d_{\rm 1} and d>d2d>d_{\rm 2}, the beta function of the three-body coupling has real roots which correspond to infrared and ultraviolet fixed points. The fixed points merge and disappear into the complex plane at the critical dimensions d1d_1 and d2d_2. For d1<d<d2d_{\rm 1}<d<d_{\rm 2}, the beta function has complex roots and the renormalization group flow for the three-body coupling constant is a limit cycle.

Keywords

Cite

@article{arxiv.1812.06153,
  title  = {Loss of Conformality in Efimov Physics},
  author = {Abhishek Mohapatra and Eric Braaten},
  journal= {arXiv preprint arXiv:1812.06153},
  year   = {2018}
}

Comments

4 pages, 1 figure. To appear in Proceedings for the 22nd International Conference on Few-Body Problems in Physics