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Tree boosting for learning EFT parameters
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Tree boosting for learning EFT parameters
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We present a new tree boosting algorithm designed for the measurement of parameters in the context of effective field theory (EFT). To construct the algorithm, we interpret the optimized loss function of a traditional decision tree as the maximal Fisher information in Poisson counting experiments. We promote the interpretation to general EFT predictions and develop a suitable boosting method. The resulting ``Boosted Information Tree'' algorithm approximates the score, the derivative of the log-likelihood function with respect to the parameter. It thus provides a sufficient statistic in the vicinity of a reference point in parameter space where the estimator is trained. The training exploits per-event information of likelihood ratios for different theory parameter values available in the simulated EFT data sets.
Forward citations
Cited by 2 Pith papers
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Local Conformal Predictions for Calibrated Surrogates
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At the HL-LHC, t-tbar + Higgs pair production could constrain four non-standard Higgs couplings, giving first projected limits for the double top-Higgs and gluon-Higgs couplings.
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