Published April 2010 | Version v1
Journal article

Track and vertex reconstruction: From classical to adaptive methods

  • 1. Institute of High Energy Physics of the Austrian Academy of Sciences, Nikolsdorfer Gasse 18, A-1050 Wien (Austria)
  • 2. Gjoevik University College, P.O. Box 191, N-2802 Gjoevik (Norway)

Description

This paper reviews classical and adaptive methods of track and vertex reconstruction in particle physics experiments. Adaptive methods have been developed to meet the experimental challenges at high-energy colliders, in particular, the CERN Large Hadron Collider. They can be characterized by the obliteration of the traditional boundaries between pattern recognition and statistical estimation, by the competition between different hypotheses about what constitutes a track or a vertex, and by a high level of flexibility and robustness achieved with a minimum of assumptions about the data. The theoretical background of some of the adaptive methods is described, and it is shown that there is a close connection between the two main branches of adaptive methods: neural networks and deformable templates, on the one hand, and robust stochastic filters with annealing, on the other hand. As both classical and adaptive methods of track and vertex reconstruction presuppose precise knowledge of the positions of the sensitive detector elements, the paper includes an overview of detector alignment methods and a survey of the alignment strategies employed by past and current experiments.

Additional details

Identifiers

Publishing Information

Journal Title
Reviews of Modern Physics
Journal Volume
82
Journal Issue
2
Journal Page Range
p. 1419-1458
ISSN
0034-6861
CODEN
RMPHAT

Optional Information

Notes
(c) 2010 The American Physical Society