We present a study of the expected precision of the top quark mass determination, measured at a linear e+ e- collider based on CLIC technology. GEANT4-based detector simulation and full event reconstruction including realistic physics and beam-induced background levels are used. Two different techniques to measure the top mass are studied: The direct reconstruction of the invariant mass of the top quark decay products and the measurement of the mass together with the strong coupling constant in a threshold scan. For both techniques, total uncertainties of around 100 MeV or better are achieved, including a first study of expected systematic uncertainties. For the threshold scan, the precision at ILC is also studied to provide a comparison of...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Abstract One of the important goals at the future e + e − colliders is to measure the top-quark mass...
We present a study of the capability of a 500 GeV e+e- collider based on CLIC technology for precisi...
We present a study of the capability of a 500 GeV e+e − collider based on CLIC tech-nology for preci...
We present a study of the capability of CLIC to measure the top quark mass and the strong coupling c...
In this letter, we evaluate the potential of linear ee colliders to measure the top quark mass in ra...
In this letter, the potential of linear e+e− colliders to measure the top quark mass in a suitable s...
AbstractFuture precision studies of the Standard Model require excellent knowledge of the top quark ...
The Compact Linear Collider (CLIC) is a concept for a next-generation accelerator at CERN, colliding...
Linear lepton colliders offer an excellent environment for precision measurements of the top quark. ...
One of the important goals at the future $e^+e^−$ colliders is to measure the top-quark mass and wid...
The Compact Linear Collider (CLIC) is a mature option for a future electron-positron collider operat...
One of the main goals of the future e+e− colliders is to measure the top-quark mass and width in a s...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Abstract One of the important goals at the future e + e − colliders is to measure the top-quark mass...
We present a study of the capability of a 500 GeV e+e- collider based on CLIC technology for precisi...
We present a study of the capability of a 500 GeV e+e − collider based on CLIC tech-nology for preci...
We present a study of the capability of CLIC to measure the top quark mass and the strong coupling c...
In this letter, we evaluate the potential of linear ee colliders to measure the top quark mass in ra...
In this letter, the potential of linear e+e− colliders to measure the top quark mass in a suitable s...
AbstractFuture precision studies of the Standard Model require excellent knowledge of the top quark ...
The Compact Linear Collider (CLIC) is a concept for a next-generation accelerator at CERN, colliding...
Linear lepton colliders offer an excellent environment for precision measurements of the top quark. ...
One of the important goals at the future $e^+e^−$ colliders is to measure the top-quark mass and wid...
The Compact Linear Collider (CLIC) is a mature option for a future electron-positron collider operat...
One of the main goals of the future e+e− colliders is to measure the top-quark mass and width in a s...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Measurements of top quark production at $e^+e^-$ colliders can provide a leap in precision in our kn...
Abstract One of the important goals at the future e + e − colliders is to measure the top-quark mass...