Abstract Using non-relativistic effective Lagrangians in the particle-dimer picture, we rederive the expression for the energy shift of a loosely bound three-particle bound state of identical bosons in the unitary limit. The effective field theory formalism allows us to explicitly investigate the role of the three-particle force. Moreover, we discuss relaxing the unitary limit of infinite scattering length and demonstrate a smooth transition from the weakly bound three-particle state to a two-particle bound state of a particle and a deeply bound dimer
We derive the three-body quantization condition in a finite volume using an effective field theory i...
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
Effective range corrections contribute to pionless effective field theory at next-to-leading order. ...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Using the three-particle quantization condition recently obtained in the particle-dimer framework, t...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
In this work, we use an extension of the quantization condition, given in ref. [1], to numerically e...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
Effective range corrections contribute to pionless effective field theory at next-to-leading order. ...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
The three-particle quantization condition is derived, using the particle-dimer picture in the non-re...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Using the three-particle quantization condition recently obtained in the particle-dimer framework, t...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
In this work, we use an extension of the quantization condition, given in ref. [1], to numerically e...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
Effective range corrections contribute to pionless effective field theory at next-to-leading order. ...