The three-particle quantization condition is derived, using the particle-dimer picture in the non-relativistic effective field theory. The procedure for the extraction of various observables in the three-particle sector (the particle-dimer scattering amplitudes, breakup amplitudes, etc.) from the finite-volume lattice spectrum is discussed in detail. As an illustration of the general formalism, the expression for the finite-volume energy shift of the three-body bound-state in the unitary limit is re-derived. The role of the threebody force, which is essential for the renormalization, is highlighted, and the extension of the result beyond the unitary limit is studied. Comparison with other approaches, known in the literature, is carried out
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
The physical interpretation of lattice QCD simulations, performed in a small volume, requires an ext...
Using the three-particle quantization condition recently obtained in the particle-dimer framework, t...
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...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
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...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Abstract Using non-relativistic effective Lagrangians in the particle-dimer picture, we rederive the...
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...
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
The physical interpretation of lattice QCD simulations, performed in a small volume, requires an ext...
Using the three-particle quantization condition recently obtained in the particle-dimer framework, t...
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...
We derive the three-body quantization condition in a finite volume using an effective field theory i...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
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...
Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu...
Abstract Using non-relativistic effective Lagrangians in the particle-dimer picture, we rederive the...
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...
In this work, we use an extension of the quantization condition, given in Ref. [1], to numerically e...
The physical interpretation of lattice QCD simulations, performed in a small volume, requires an ext...
Using the three-particle quantization condition recently obtained in the particle-dimer framework, t...