18–19 May 2026
Koshiba Hall, The University of Tokyo
Asia/Tokyo timezone

Analytical solution of the Schrödinger equation with 1/r^3 and attractive 1/r^2 potentials: Universal three-body parameter of mixed-dimensional Efimov states

18 May 2026, 16:45
5m
Koshiba Hall, The University of Tokyo

Koshiba Hall, The University of Tokyo

7-3-1 Hongo, Bunkyo-ku Tokyo

Speaker

Yuki Ohishi (Department of Engineering Science, University of Electro-Communications)

Description

We study the Schrödinger equation with $1/r^3$ and attractive $1/r^2$ potentials. Using the quantum defect theory, we obtain analytical solutions for both repulsive and attractive $1/r^3$ interactions. The obtained discrete-scale-invariant energies and wave functions, validated by excellent agreement with numerical results, provide a natural framework for describing the universality of Efimov states in mixed dimension. Specifically, we consider a three-body system consisting of two heavy particles with large dipole moments confined to a quasi-one-dimensional geometry and resonantly interacting with an unconfined light particle. With the Born–Oppenheimer approximation, this system is effectively reduced to the Schrödinger equation with $1/r^3$ and $1/r^2$ potentials, and manifests the Efimov effect. Our analytical solution suggests that, for repulsive dipole interactions, the three-body parameter of the mixed-dimensional Efimov states is universally set by the dipolar length scale, whereas for attractive interactions it explicitly depends on the short-range phase. We also investigate the effects of finite transverse confinement and find that our analytical results are useful for describing the Efimov states composed of two polar molecules and a light atom.

Authors

Dr Kazuki Oi (Department of Physics, Tohoku University) Shimpei Endo (Tohoku University) Yuki Ohishi (Department of Engineering Science, University of Electro-Communications)

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