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Machine Learning based jet momentum reconstruction in heavy-ion collisions

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arxiv 1810.06324 v2 pith:NQBUOKPO submitted 2018-10-15 nucl-ex nucl-th

classification nucl-exnucl-th
keywords collisionsheavy-ionbackgroundmethodmomentatransversedatajets
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The precise reconstruction of jet transverse momenta in heavy-ion collisions is a challenging task. A major obstacle is the large number of (mainly) low-$p_{\rm T}$ particles overlaying the jets. Strong region-to-region fluctuations of this background complicate the jet measurement and lead to significant uncertainties. In this paper, a novel approach to correct jet momenta (or energies) for the underlying background in heavy-ion collisions is introduced. The proposed method makes use of common Machine Learning techniques to estimate the jet transverse momentum based on several parameters, including properties of the jet constituents. Using a toy model and HIJING simulations, the performance of the new method is shown to be superior to the established standard area-based background estimator. The application of the new method to data promises the measurement of jets down to extremely low transverse momenta, unprecedented thus far in data on heavy-ion collisions.

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Cited by 1 Pith paper

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  1. High-Dimensional Unfolding in Large Backgrounds

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    OmniFold-HI, an ML unfolding algorithm that handles large backgrounds and high-dimensional auxiliary observables, is derived, shown equivalent to iterative Bayesian unfolding, and demonstrated to improve jet-substruct...

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