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November 30, 2025Journal of High Energy Physics5 citationsOpen Access

Higher-order corrections to quantum observables in h → WW*

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DGDorival GonçalvesAKAjay KaladharanANAlberto Navarro

Key Points

  • Quantum properties reveal about 5% shifts in angular coefficients of the Higgs boson decay.
  • The decay h → WW * illustrates greater stability under corrections compared to h → ZZ * decay.
  • Next-to-leading order electroweak corrections were systematically studied for their impact on decay coefficients.
  • Understanding these corrections may enhance insight into gauge bosons and quantum entanglement.

Abstract

A bstract The Higgs boson decay h → WW * → ^+ ^ -^ ℓ + ν ℓ ℓ ′ − ν ¯ ℓ ′ provides a unique window into the structure of the Higgs couplings to electroweak gauge bosons and has recently gained attention for its potential to unveil quantum properties such as quantum entanglement between the intermediate gauge bosons. In this work, we present a systematic study of next-to-leading order electroweak corrections to the angular coefficients characterizing this decay. While these coefficients are highly constrained at leading order, radiative corrections induce shifts of up to 5% to the existing terms and generate novel structures that vanish at leading order, breaking previous relations among coefficients. While higher-order effects influence the results, the two-qutrit quantum structure in the h → WW ∗ channel exhibits greater stability under such corrections than in the previously studied h → ZZ ∗ decay.

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Cite This Study

Gonçalves et al. (2025) studied this question.

synapsesocial.com/papers/692b9d8d1d383f2b2a379b25https://doi.org/10.1007/jhep11(2025)158
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