Studying the soft anomalous dimension for massless multi-leg scattering at four loops
dc.contributor.advisor
Gardi, Einan
dc.contributor.advisor
O'Connell, Donal
dc.contributor.advisor
Ball, Richard
dc.contributor.advisor
Smillie, Jennifer
dc.contributor.author
Maher, Niamh
dc.date.accessioned
2023-04-11T09:07:34Z
dc.date.available
2023-04-11T09:07:34Z
dc.date.issued
2023-04-11
dc.description.abstract
Infrared (IR) singularities are a salient feature of gauge theory scattering
amplitudes and their study is important from both practical and theoretical
perspectives. IR singularities exponentiate in terms of the so called soft
anomalous dimension and are the object of this research. At one loop, the
soft anomalous dimension is a sum over dipoles. Corrections to the dipole
formula start at three loops with dependence on conformally invariant cross ratios
constructed from the momentum dot products between four distinct particles.
At four loops there are additional corrections involving the quartic Casimir
invariants.
While direct computation of the soft anomalous dimension was achieved at three
loops, it is far beyond reach at four loops. In this work we develop a bootstrap
method which can potentially allow us to determine it. The starting point is
writing an ansatz for the four-loop soft anomalous dimension in terms of a suitable
basis of functions of the kinematic variables. These multiply colour structures
representing fully connected diagrams. To describe the kinematic functions in
the Euclidean region, where all Mandelstam invariants are negative and for fixed
angle scattering the amplitude is free from singularities, the soft anomalous
dimension must be expressible in terms of single-valued polylogarithms. These
can then be analytically continued to the physical region. At three loops, single-
valued harmonic polygarithms were sufficient to describe the kinematic functions.
However we find that at four loops, new higher weight single-valued multiple
polylogarithms are required. Our work employs physical limits such as collinear
limits and Regge limits, along with Bose symmetry, to constrain and eventually
determine the kinematic functions in general kinematics.
This bootstrap approach was successfully employed at three loops, reproducing
the exact result. At four loops we find new constraints on the kinematic functions
from the Regge limit for 2 → 2 scattering and from the finiteness of the momentum conserving limit. Imposing all these constraints we summarise the
state-of-the-art knowledge of the soft anomalous dimension at four loops.
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dc.identifier.uri
https://hdl.handle.net/1842/40466
dc.identifier.uri
http://dx.doi.org/10.7488/era/3232
dc.language.iso
en
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dc.publisher
The University of Edinburgh
en
dc.relation.hasversion
N. Maher, G. Falcioni, E. Gardi, C. Milloy, and L. Vernazza, “The Soft Anomalous Dimension at four loops in the Regge Limit,” SciPost Phys. Proc., vol. 7, p. 013, 2022. [Online]. Available: https://scipost.org/SciPostPhysProc.7.013
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dc.relation.hasversion
G. Falcioni, E. Gardi, N. Maher, C. Milloy, and L. Vernazza, “Twoparton scattering in the high-energy limit: climbing two- and three-Reggeon ladders,” SciPost Phys. Proc., vol. 7, p. 007, 2022.
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dc.relation.hasversion
“Scattering amplitudes in the Regge limit and the soft anomalous dimension through four loops,” JHEP, vol. 03, p. 053, 2022.
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dc.relation.hasversion
“Disentangling the Regge Cut and Regge Pole in Perturbative QCD,” Phys. Rev. Lett., vol. 128, no. 13, p. 132001, 2022.
en
dc.relation.hasversion
C. Milloy, G. Falcioni, E. Gardi, N. Maher, and L. Vernazza, “High-energy limit of 2 → 2 scattering amplitudes at NNLL,” in 16th DESY Workshop on Elementary Particle Physics: Loops and Legs in Quantum Field Theory 2022, 7 2022.
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dc.subject
Soft Anomalous Dimension
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dc.subject
massless multi-leg scattering
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dc.subject
massless multi-leg scattering at loops
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dc.subject
Infrared singularities
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dc.subject
gauge theory scattering amplitudes
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dc.subject
quartic Casimir invariants
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dc.subject
kinematic functions
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dc.subject
Euclidean region
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dc.subject
Mandelstam invariants
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dc.subject
fixed angle scattering
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dc.subject
singlevalued harmonic polygarithms
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dc.subject
collinear limits
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dc.subject
Regge limits
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dc.subject
Bose symmetry
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dc.title
Studying the soft anomalous dimension for massless multi-leg scattering at four loops
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dc.type
Thesis or Dissertation
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dc.type.qualificationlevel
Doctoral
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dc.type.qualificationname
PhD Doctor of Philosophy
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