Preprint

·2024 OPEN ACCESS

Search for a heavy resonance decaying into a Z and a Higgs boson in events with an energetic jet and two electrons, two muons, or missing transverse momentum in proton-proton collisions at $\sqrt{s}$ = 13 TeV

Aram Hayrapetyan , A. Tumasyan , W. Adam , Janik Walter Andrejkovic , T. Bergauer , S. Chatterjee , K. Damanakis , M. Dragicevic , Priya Sajid Hussain , M. Jeitler ,

arXiv (Cornell University)

Abstract

A search is presented for a heavy resonance decaying into a Z boson and a Higgs (H) boson. The analysis is based on data from proton-proton collisions at a centre-of-mass energy of 13 TeV corresponding to an integrated luminosity of 138 fb$^{-1}$, recorded with the CMS experiment in the years 2016-2018. Resonance masses between 1.4 and 5 TeV are considered, resulting in large transverse momenta of the Z and H bosons. Final states that result from Z boson decays to pairs of electrons, muons, or neutrinos are considered. The H boson is reconstructed as a single large-radius jet, recoiling against the Z boson. Machine-learning flavour-tagging techniques are employed to identify decays of a Lorentz-boosted H boson into pairs of charm or bottom quarks, or into four quarks via the intermediate H $\to$ WW* and ZZ* decays. The analysis targets H boson decays that were not generally included in previous searches using the H $\to$$\mathrm{b\bar{b}}$ channel. Compared with previous analyses, the sensitivity for high resonance masses is improved significantly in the channel where at most one b quark is tagged.

Keywords

Physics Particle physics Higgs boson Boson Nuclear physics Muon Resonance (particle physics) Quark Neutrino Standard Model (mathematical formulation) Vector boson

Subject Areas

Particle physics theoretical and experimental studies ·Nuclear and High Energy Physics ·Physical Sciences
Gamma-ray bursts and supernovae ·Astronomy and Astrophysics ·Physical Sciences
Neutrino Physics Research ·Nuclear and High Energy Physics ·Physical Sciences

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Affordable and clean energy 73%