Published January 4, 2024 | Version v1
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Number Density Interpretation of Dihadron Fragmentation Functions

  • 1. Department of Physics, Lebanon Valley College, Annville, Pennsylvania 17003, USA
  • 2. Department of Physics, SERC, Temple University, Philadelphia, Pennsylvania 19122, USA
  • 3. Division of Science, Penn State University Berks, Reading, Pennsylvania 19610, USA
  • 4. Jefferson Lab, Newport News, Virginia 23606, USA

Description

We present a new quantum field-theoretic definition of fully unintegrated dihadron fragmentation functions (DiFFs) as well as a generalized version for n-hadron fragmentation functions. We demonstrate that this definition allows certain sum rules to be satisfied, making it consistent with a number density interpretation. Moreover, we show how our corresponding so-called extended DiFFs that enter existing phenomenological studies are number densities and also derive their evolution equations. Within this new framework, DiFFs extracted from experimental measurements will have a clear physical meaning.

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10.1103_PhysRevLett.132.011902.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevLett.132.011902;
arXiv
arXiv:2305.11995;
Crossref Funder ID
10.13039/100000015; 10.13039/100000001; 10.13039/100006132; 10.13039/100006209; 10.13039/100010842;

Publishing Information

Journal Title
Physical Review Letters
Journal Volume
132
Journal Issue
1
Journal Page Range
7 pgs.
ISSN
0031-9007

INIS