Lattice QCD calculations provide an ab initio access to hadronic process. These calculations are usu ally performed in a small cubic volume with periodic boundary conditions. The infinite volume extrapolations for three-body systems are indispensable to understand many systems of high current interest. We derive the three-body quantization condition in a finite volume using an effective field theory in the particle-dimer picture. Our work shows a powerful and transparent method to read off three-body physical observables from lattice simulations. In this paper, we review the formalism, quantization condition, spectrum analysis and energy shifts calculation both for 3-body bound states and scattering states
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
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...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
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...
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...
The physical interpretation of lattice QCD simulations, performed in a small volume, requires an ext...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
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...
Abstract We derive the three-body quantization condition in a finite volume using an effective field...
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...
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...
The physical interpretation of lattice QCD simulations, performed in a small volume, requires an ext...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...
The three-particle quantization condition is partially diagonalized in the center-of-mass frame by u...