Published September 3, 2024 | Version v1
Journal article Open

Inclusive reactions from finite Minkowski spacetime correlation functions

  • 1. Department of Physics, Old Dominion University, Norfolk, Virginia 23529, USA
  • 2. Thomas Jefferson National Accelerator Facility, 12000 Jefferson Avenue, Newport News, Virginia 23606, USA
  • 3. Department of Physics, University of California, Berkeley, California 94720, USA
  • 4. Nuclear Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA
  • 5. Department of Physics, College of William & Mary, Williamsburg, Virginia 23187, USA

Description

The need to determine scattering amplitudes of few-hadron systems for arbitrary kinematics expands a broad set of subfields of modern-day nuclear and hadronic physics. In this work, we expand upon previous explorations on the use of real-time methods, like quantum computing or tensor networks, to determine few-body scattering amplitudes. Such calculations must be performed in a finite Minkowski spacetime, where scattering amplitudes are not well defined. Our previous work presented a conjecture of a systematically improvable estimator for scattering amplitudes constructed from finite-volume correlation functions. Here we provide further evidence that the prescription works for larger kinematic regions than previously explored as well as a broader class of scattering amplitudes. Finally, we devise a new method for estimating the order of magnitude of the error associated with finite time separations needed for such calculations. In units of the lightest mass of the theory, we find that to constrain amplitudes using real-time methods within O(10%), the spacetime volumes must satisfy mLO(10102)) and mTO(102104).

Files

10.1103_PhysRevD.110.054503.pdf

Files (1.7 MB)

Name Size Download all
md5:5c62a8aeb02df0db3d15e31945e047e1
1.7 MB Preview Download

Additional details

Identifiers

DOI
10.1103/PhysRevD.110.054503;
arXiv
arXiv:2406.06877;
Crossref Funder ID
10.13039/100000015; 10.13039/100011665; 10.13039/100007000; 10.13039/100006132; 10.13039/100006209; 10.13039/100005766;

Publishing Information

Journal Title
Physical Review D
Journal Volume
110
Journal Issue
5
Journal Page Range
19 pgs.
ISSN
1089-4918

Optional Information

Contract/Grant/Project number
DE-SC0019229; LD2117; DE-SC0023047; DE-AC02-05CH11231; 23-157-100846-010/80NSSC20M0056
Notes
Contact Email: Contact author: mcarr020@odu.edu; Contact Email: Contact author: rbriceno@berkeley.edu; Contact Email: Contact author: amsturzu@wm.edu; Record automatically processed
Funding organization
U.S. Department of Energy; Thomas Jefferson National Accelerator Facility; Laboratory Directed Research and Development; Office of Science; Nuclear Physics; Virginia Space Grant Consortium