# A detector for CLIC: main parameters and performance

**Authors:** Dominik Arominski, Jean-Jacques Blaising, Erica Brondolin, Dominik, Dannheim, Konrad Elsener, Frank Gaede, Ignacio Garc\'ia-Garc\'ia, Steven, Green, Daniel Hynds, Emilia Leogrande, Lucie Linssen, John Marshall,, Nikiforos Nikiforou, Andreas N\"urnberg, Estel Perez-Codina, Marko, Petri\v{c}, Florian Pitters, Aidan Robson, Philipp Roloff, Andr\'e Sailer,, Ulrike Schnoor, Frank Simon, Rosa Simoniello, Simon Spannagel, Rickard, Str\"om, Oleksandr Viazlo, Matthias Weber, Boruo Xu

arXiv: 1812.07337 · 2018-12-19

## TL;DR

This paper introduces the CLICdet detector model and software suite, detailing its parameters, simulation tools, and performance metrics for various physics measurements at 380 GeV and 3 TeV.

## Contribution

It provides a comprehensive overview of the CLICdet detector's design, simulation, and expected physics performance under realistic experimental conditions.

## Key findings

- Good jet energy resolution achieved
- Effective flavour tagging demonstrated
- Forward calorimeter performance characterized

## Abstract

Together with the recent CLIC detector model CLICdet a new software suite was introduced for the simulation and reconstruction of events in this detector. This note gives a brief introduction to CLICdet and describes the CLIC experimental conditions at 380 GeV and 3 TeV, including beam-induced backgrounds. The simulation and reconstruction tools are introduced, and the physics performance obtained is described in terms of single particles, particles in jets, jet energy resolution and flavour tagging. The performance of the very forward electromagnetic calorimeters is also discussed.

## Full text

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## Figures

348 figures with captions in the complete paper: https://tomesphere.com/paper/1812.07337/full.md

## References

41 references — full list in the complete paper: https://tomesphere.com/paper/1812.07337/full.md

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Source: https://tomesphere.com/paper/1812.07337