English

Three two-component fermions with contact interactions: correct formulation and energy spectrum

Quantum Gases 2019-04-11 v1 Atomic Physics

Abstract

Properties of two identical particles of mass mm and a distinct particle of mass m1m_1 in the universal low-energy limit of zero-range two-body interaction are studied in different sectors of total angular momentum LL and parity PP. For the unambiguous formulation of the problem in the interval μr(LP)<m/m1μc(LP)\mu_r(L^P) < m/m_1 \le \mu_c(L^P) (μr(1)8.619\mu_r(1^-) \approx 8.619 and μc(1)13.607\mu_c(1^-) \approx 13.607, μr(2+)32.948\mu_r(2^+) \approx 32.948 and μc(2+)38.630\mu_c(2^+) \approx 38.630,~etc.) in each LPL^P sector an additional parameter bb determining the wave function near the triple-collision point is introduced; thus, a one-parameter family of self-adjoint Hamiltonians is defined. Within the framework of this formulation, dependence of the bound-state energies on m/m1m/m_1 and bb in the sector of angular momentum and parity LPL^P is calculated for L5L \le 5 and analysed with the aid of a simple model. A number of the bound states for each LPL^P sector is analysed and presented in the form of `phase diagrams' in the plane of two parameters m/m1m/m_1 and bb.

Keywords

Cite

@article{arxiv.1904.04943,
  title  = {Three two-component fermions with contact interactions: correct formulation and energy spectrum},
  author = {O. I. Kartavtsev and A. V. Malykh},
  journal= {arXiv preprint arXiv:1904.04943},
  year   = {2019}
}

Comments

32 pages, 14 figures

R2 v1 2026-06-23T08:34:51.419Z