English

Top quark mass measurement in radiative events at electron-positron colliders

High Energy Physics - Phenomenology 2020-03-11 v1 High Energy Physics - Experiment

Abstract

In this letter, we evaluate potential of linear e+ee^+e^- colliders to measure the top quark mass in radiative events and in a suitable short-distance scheme. We present a calculation of the differential cross section for production of a top quark pair in association with an energetic photon from initial state radiation, as a function of the invariant mass of the ttˉt\bar{t} system. This {\it matched} calculation includes the QCD enhancement of the cross section around the ttˉt\bar{t} production threshold and remains valid in the continuum well above the threshold. The uncertainty in the top mass determination is evaluated in realistic operating scenarios for the Compact Linear Collider (CLIC) and the International Linear Collider (ILC), including the statistical uncertainty and the theoretical and experimental systematic uncertainties. With this method, the top quark mass can be determined with a precision of 110110 MeV in the initial stage of CLIC, with 11 ab1^{-1} at s=\sqrt{s} = 380 GeV, and with a precision of approximately 150150 MeV at the ILC, with L=4L = 4 ab1^{-1} at s=500\sqrt{s}= 500 GeV. Radiative events allow measurements of the top quark mass at different renormalization scales, and we demonstrate that such a measurement can yield a statistically significant test of the evolution of the MSR mass mtMSR(R)m_t^{\rm MSR}(R) for scales R<mtR< m_t.

Keywords

Cite

@article{arxiv.1912.01275,
  title  = {Top quark mass measurement in radiative events at electron-positron colliders},
  author = {Marça Boronat and Esteban Fullana and Juan Fuster and Pablo Gomis and André Hoang and Vicent Mateu and Marcel Vos and Angelika Widl},
  journal= {arXiv preprint arXiv:1912.01275},
  year   = {2020}
}

Comments

10 pages + bibliography