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M. Herrero

Publications and source records attributed to M. Herrero.

4 recordsLinked to original sources

Tests of BSM Higgs interactions by the combination $(κ_V^2-κ_{2V})$ in HHjj production at LHC

In this work, we study the potential of analyzing the particular combination of $κ$ modifiers given by $κ_V^2-κ_{2V}$ to disentangle Beyond Standard Model Higgs signals in double Higgs production with two extra light jets at LHC. We use the Higgs Effective Field Theory approach, HEFT, for the gauge invariant description of these two $κ_V$ and $κ_{2V}$ parameters representing the BSM interactions of the Higgs particle with the electroweak gauge bosons, $HVV$ and $HHVV$ respectively. We illustrate the bonus of studying this particular combination $κ_V^2-κ_{2V}$ focusing in just one process, $HHjj$, instead of studying $κ_V$ and $κ_{2V}$ separately using various processes. For the detailed analysis here, we focus on the particular final state $H(\to γγ) H (\to b \bar b)jj'$, with two photons, two b-jets and two light jets, which we analyze fully including parton showering, fragmentation, hadronization and detector effects, in both signal and main background. We find that the sensitivity to $κ_V^2-κ_{2V}$ could be notably improved at the HL-LHC by the proper cuts on the final state $b \bar b γγjj'$ that select optimally the events with VBF-topology and $HH$-topology. In particular, we propose strategies based on a good isolation of $γγ$ and b-jet pairs, and focus specially on specific variables like $η_{γγ}$ and $P^T_{γγ}$ where the signal events distributions may efficiently discriminate between BSM signal versus SM background. We will show here how the high transversality of these two pairs in the signal (inherited from the high transversality of the $H$'s) is correlated with the non-vanishing value of this $(κ_V^2-κ_{2V})$ combination.

hep-ph

Matching HEFT and SMEFT in double and triple Higgs production from weak boson fusion

In this work we study the matching between the two most popular effective field theories for beyond standard model Higgs physics, SMEFT and HEFT. To perform this matching we follow the approach of identifying the corresponding scattering amplitudes for physical processes in both theories, instead of the most usual approach of relating the corresponding effective Lagrangians or effective actions. In this work we focus on the physical processes of double and triple Higgs production from weak boson fusion, in particular, $WW \to HH$, $ZZ \to HH$, $WW \to HHH$ and $ZZ \to HHH$ and complement them with the elastic scattering $HH \to HH$. We present here the analytical solution to this matching in terms of relations among the coefficients in both theories and comment on the most relevant phenomenological implications of such relations for collider physics.

hep-ph

Sensitivity to the Higgs sector of SUSY-seesaw models via LFV tau decays

Here we study and compare the sensitivity to the Higgs sector of the SUSY-seesaw models via the LFV tau decays: tau-> 3 mu, tau->K^{+}K^{-}, tau->mu eta and tau-> mu f_{0}. We emphasize that, at present, the two later channels are the most efficient ones to test indirectly the Higgs particles.

hep-ph

Lepton Flavour Violation in charged leptons within SUSY-seesaw

In this paper we review our main results for Lepton Flavour Violating (LFV) semileptonic tau decays and muon-electron conversion in nuclei within the context of two Constrained SUSY-Seesaw Models, the CMSSM and the NUHM. The relevant spectrum is that of the Minimal Supersymmetric Standard Model extended by three right handed neutrinos, $ν_{R_i}$ and their corresponding SUSY partners, ${\tilde ν}_{R_i}$, ($i=1,2,3$). We use the seesaw mechanism for neutrino mass generation and choose a parameterisation of this mechanism that allows us to incorporate the neutrino data in our analysis of LFV processes. In addition to the full one-loop results for the rates of these processes, we will also review the set of simple formulas, valid at large $\tan β$, which are very useful to compare with present experimental bounds. The sensitivity to SUSY and Higgs sectors in these processes will also be discussed. This is a very short summary of the works in Refs. \cite{Arganda:2008jj} and \cite{Arganda:2007jw} to which we refer the reader for more details.

hep-ph