AI Summary of Scholarly Research

This page presents an AI-generated summary of a published research paper. The original authors did not write or review this article. [See full disclosure ↓]

Next-to-leading power terms are significant in slepton pair production

Research area:physics-astronomyparticle-atomic

What the study found

The study finds that next-to-leading power contributions in the threshold variable can be significant for inclusive slepton pair production. It also reports that existing calculations may underestimate the scale error for large slepton masses.

Why the authors say this matters

The authors note that cross sections near threshold are sensitive to large logarithmic terms that must be resummed to all orders in perturbation theory. The study suggests that including next-to-leading power effects is important for assessing the reliability of predictions, especially for large slepton masses.

What the researchers tested

The researchers evaluated the next-to-leading power contribution in the threshold variable to leading logarithmic accuracy for inclusive slepton pair production at hadron colliders. They also included results for a potential future FCC-hh machine at 85 TeV.

What worked and what didn't

The next-to-leading power contributions were found to be significant compared with the next-to-leading logarithmic terms at leading power. The abstract also states that existing calculations underestimate the scale error for large slepton masses.

What to keep in mind

The available summary does not describe detailed numerical values, experimental data, or a full comparison across all parameter ranges. It also does not provide additional limitations beyond the focus on leading logarithmic accuracy and the specific collider scenarios studied.

Key points

  • Next-to-leading power contributions in the threshold variable can be significant.
  • These contributions were evaluated for inclusive slepton pair production at hadron colliders.
  • Existing calculations may underestimate the scale error for large slepton masses.
  • The study includes results for a future FCC-hh machine at 85 TeV.
  • The work focuses on leading logarithmic accuracy near threshold.

Disclosure

Research title:
Next-to-leading power terms are significant in slepton pair production
Authors:
Lasse Lorentz Braseth, Tore Klungland, Are Raklev
Institutions:
University of Oslo, University of Oslo, University of Oslo
Publication date:
2026-04-27
OpenAlex record:
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AI provenance: This post was generated by gpt-5.4-mini (OpenAI). The original authors did not write or review this post.