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Jörn Bach

Publications and source records attributed to Jörn Bach.

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Pointwise Metrics Mislead: An Evaluation Protocol for Multimodal Inverse Problems

Evaluation in scientific reconstruction is dominated by pointwise metrics - RMSE, MAE, per-event resolution - under the implicit assumption that lower error means better reconstruction. We show that this assumption fails structurally for inverse problems with multimodal posteriors. By the law of total variance, point estimators trained to minimize MSE or MAE produce a marginal spectrum strictly narrower than the truth whenever the posterior has nonzero width. The resulting bias is independent of architecture, training, and dataset size, and it compresses precisely the spectral features - tails, modes, shapes - that downstream scientific measurements rely on. We propose a three-part evaluation protocol where each step targets a failure mode the others miss: per-event distributional accuracy via CRPS, population-level marginal accuracy via a spectrum-fidelity diagnostic, and uncertainty trustworthiness via coverage-based calibration. On a synthetic benchmark with an analytic posterior and on a realistic many-to-one inverse problem from particle physics, model rankings reverse between pointwise and distributional metrics, and calibration further separates architectures indistinguishable under CRPS. The evaluation protocol, not the model, determines the scientific conclusion.

cs.LG

CMS Results at the $\text{t}\bar{\text{t}}$ threshold

Recent results of CMS at the top-antitop quark pair production threshold in the dileptonic and semileptonic decay channels are presented. The results were obtained analyzing $138~\mathrm{fb}^{-1}$ of $pp$ collision data taken at $\sqrt{s}=13~\mathrm{TeV}$ with the CMS detector. Spin-sensitive variables are combined with the $t\bar t$ invariant mass $m_{t\bar t}$ to achieve high sensitivity for intermediate heavy pseudoscalar or scalar states. An excess in the data is observed for low values of $m_{t\bar t}$, favoring a pseudoscalar over a scalar hypothesis. The results are given in the interpretation of a simplified $t\bar t$ bound state model $η_t$ and in a generic model for heavy (pseudo)scalar production. The observed excess is compatible with non-relativistic QCD (NRQCD) calculations for a $t\bar t$ bound state.

hep-ex