Threshold expansion formula of -boson in finite volume from variational approach
arXiv:2002.04111 · doi:10.1103/PhysRevD.101.054512
Abstract
In present work, we show how the threshold expansion formula of identical bosons in finite volume may be derived by iterations of Faddeev-type coupled dynamical equations. The energy shift of -boson system near threshold is dominated by zero momenta mode of -body amplitudes with all particles nearly static. The dominant zero momenta mode and sub-leading non-zero momenta mode contributions are connected through finite volume Faddeev-type coupled dynamical equations. Eliminating non-zero momenta modes by iterations ultimately yields an analytic expression that can be solved by threshold expansion.
References in corpus (15)
- A relativistic, model-independent, three-particle quantization condition
- S and D-wave phase shifts in isospin-2 pi pi scattering from lattice QCD
- Three particle quantization condition in a finite volume: 2. general formalism and the analysis of data
- Three-body Unitarity in the Finite Volume
- Resonances in coupled scattering from lattice QCD
- Three-particle quantization condition in a finite volume: 1. The role of the three-particle force
- Multi-Pion States in Lattice QCD and the Charged-Pion Condensate
- n-Boson Energies at Finite Volume and Three-Boson Interactions
- Implementing the three-particle quantization condition including higher partial waves
- Efimov physics in a finite volume
- The Energy of n Identical Bosons in a Finite Volume at O(L^{-7})
- One spatial dimensional finite volume three-body interaction for a short-range potential
- An numerical approach for finite volume three-body interaction
- A lattice model of heavy-light three-body system
- Kaon Condensation with Lattice QCD
Cited by in corpus (13)
- Towards a theory of hadron resonances
- Three-body interactions from the finite-volume QCD spectrum
- Multi-particle systems on the lattice and chiral extrapolations: a brief review
- system in finite volume
- Relativistic -particle energy shift in finite volume
- Three-body dynamics of the resonance from lattice QCD
- Multi- systems in finite volume
- Modeling few-body resonances in finite volume
- Coulomb corrections to two-particle interaction in artificial traps
- Charged particles interaction in both a finite volume and a uniform magnetic field
- Visualizing resonances in finite volume
- Nuclear reactions in artificial traps
- Toward extracting scattering phase shift from integrated correlation functions on quantum computers