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Jet Flavor Classification in High-Energy Physics with Deep Neural Networks

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arxiv 1607.08633 v2 pith:BAI7NPRM submitted 2016-07-28 hep-ex physics.data-an

classification hep-exphysics.data-an
keywords classificationinformationtaskdatadeepnetworksstate-of-the-artclassifiers
verification ladder T0 review T1 audit T2 compute T3 formal
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Classification of jets as originating from light-flavor or heavy-flavor quarks is an important task for inferring the nature of particles produced in high-energy collisions. The large and variable dimensionality of the data provided by the tracking detectors makes this task difficult. The current state-of-the-art tools require expert data-reduction to convert the data into a fixed low-dimensional form that can be effectively managed by shallow classifiers. We study the application of deep networks to this task, attempting classification at several levels of data, starting from a raw list of tracks. We find that the highest-level lowest-dimensionality expert information sacrifices information needed for classification, that the performance of current state-of-the-art taggers can be matched or slightly exceeded by deep-network-based taggers using only track and vertex information, that classification using only lowest-level highest-dimensionality tracking information remains a difficult task for deep networks, and that adding lower-level track and vertex information to the classifiers provides a significant boost in performance compared to the state-of-the-art.

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Cited by 3 Pith papers

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