2014Journal of Physics B Atomic Molecular and Optical PhysicsOpen access

On the limit of existence of Borromean binding in three-particle systems with screened Coulomb interactions

Mariusz Pawlak, Mirosław Bylicki, P. K. Mukherjee

Open full text 13 citations

Abstract

Molecular-type systems, ( m 1 ) ± ( m 2 ) ± ( m 3 ) ∓ , consisting of three particles of masses m i and of unit electric charges with the Coulomb interactions weakened by the Debye screening are considered. Existence and range of Borromean binding in symmetric systems (of masses m 1 = m 2 ) is investigated with respect to the masses of their constituents. It is shown that such systems can exist in Borromean ground states if the mass ratio q = m 3 / m 1 is less or equal to 1.668. This improves considerably the lower bound to the limit of existence of the Borromean binding of symmetric systems suggested by Pont and Serra (2009 Phys. Rev. A 79 032508) as q ⩽ 1. Qualitative meaning of the improvement is that the Borromean binding occurs not only for systems where two identical particles are heavier than the third one but it is also possible for systems of the opposite mass relation. The range of screening parameter in which a system is Borromean known as a Borromean window is also determined for μ + μ + e − , π + π + μ − , π + μ − μ − and e + e − e − .

Open-access reader

About this research paper

What this paper is about

Molecular-type systems, ( m 1 ) ± ( m 2 ) ± ( m 3 ) ∓ , consisting of three particles of masses m i and of unit electric charges with the Coulomb interactions weakened by the Debye screening are considered. Existence and range of Borromean binding in symmetric systems (of masses m 1 = m 2 ) is investigated with respect to the masses of their constituents. It is shown that such systems can exist in Borromean ground states if the mass ratio q = m 3 / m 1 is less or equal to 1.668. This improves considerably the lower bound to the limit of existence of the Borromean binding of symmetric systems suggested by Pont and Serra (2009 Phys. Rev. A 79 032508) as q ⩽ 1. Qualitative meaning of the improvement is that the Borromean binding occurs not only for systems where two identical particles are heavier than the third one but it is also possible for systems of the opposite mass relation. The range of screening parameter in which a system is Borromean known as a Borromean window is also determined for μ + μ + e − , π + π + μ − , π + μ − μ − and e + e − e − .

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Molecular-type systems, ( m 1 ) ± ( m 2 ) ± ( m 3 ) ∓ , consisting of three particles of masses m i and of unit electric charges with the Coulomb interactions weakened by the Debye screening are considered. Existence and range of Borromean binding in symmetric systems (of masses m 1 = m 2 ) is investigated with respect to the masses of their constituents. It is shown that such systems can exist in Borromean ground states if the mass ratio q = m 3 / m 1 is less or equal to 1.668. This improves considerably the lower bound to the limit of existence of the Borromean binding of symmetric systems suggested by Pont and Serra (2009 Phys. Rev. A 79 032508) as q ⩽ 1. Qualitative meaning of the improvement is that the Borromean binding occurs not only for systems where two identical particles are heavier than the third one but it is also possible for systems of the opposite mass relation. The range of screening parameter in which a system is Borromean known as a Borromean window is also determined for μ + μ + e − , π + π + μ − , π + μ − μ − and e + e − e − .

Key concepts: Coulomb, Physics, Limit (mathematics), Range (aeronautics), Debye length, Particle (ecology), Quantum electrodynamics, Quantum mechanics

Related papers

Back to paper searchBrowse research topicsOriginal source
On the limit of existence of Borromean binding in three-particle systems with screened Coulomb interactions — Research Paper | ScholarLens