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Yasaman Hosseini

Publications and source records attributed to Yasaman Hosseini.

4 recordsLinked to original sources

Constraints on Vector-Like Top Dipole Interactions from Top-Associated Photon Measurements at the LHC

Precision measurements of top-quark production with energetic photons provide a complementary probe of vector-like quarks with nonstandard radiative decays. We reinterpret the CMS differential $t\bar tγ$ measurement and the ATLAS fiducial $t\bar tγγ$ cross section to constrain the electromagnetic and chromomagnetic transition interactions of a charge-$2/3$ vector-like top partner, $T$. We consider effective interactions written in terms of physical fields after electroweak symmetry breaking, retaining only the decays $T\to tγ$ and $T\to tg$. The CMS signal includes both the mixed $(tγ)(tg)$ topology and double-radiative $t\bar tγγ$ events entering the exactly-one-photon fiducial region, while the ATLAS rate is interpreted using a signal-specific detector-response transfer factor. Signal uncertainties are included, and the interpretation is restricted point by point to the domain satisfying the EFT and narrow-width requirements. Denoting the electromagnetic and chromomagnetic transition coefficients by $c_{tγ}$ and $c_{tg}$, respectively, we find that, for $c_{tg}=1.0\times10^{-5}~\GeV^{-1}$ and $m_T=500~\GeV$, the observed Run~2 exclusions at 95\% confidence level extend down to $c_{tγ}\simeq4.7\times10^{-7}~\GeV^{-1}$ for CMS and $2.3\times10^{-6}~\GeV^{-1}$ for ATLAS within the valid domain. At $m_T=1000~\GeV$, the corresponding values are $2.1\times10^{-6}$ and $8.5\times10^{-6}~\GeV^{-1}$. Projections to the HL-LHC indicate improved sensitivity to these radiative transition interactions. These results establish top-associated photon measurements as complementary probes of radiative top-partner interactions beyond searches targeting conventional decay modes.

hep-ph

Unitarity Constraints and Collider Searches for Dark Photons

Dark photons are predicted by various new physics models, and are being intensively studied in a variety of experiments. In the first part of this paper, we obtain partial wave unitarity constraints on the dark photon parameter space from the allowed $VV\rightarrow VV$ scattering processes in the limit of large center-of-mass energy, where $V=W,Z$. In the second part of the paper, searches are performed using the expected differential rates with a realistic detector simulation including a comprehensive set of background processes on dilepton and dilepton plus a photon events at the High Luminosity LHC. In these searches, sensitive differential distributions are used in an optimized way to determine the sensitivity to dark photon parameter space. It is shown that remarkable sensitivity to the dark photon model is achieved and kinetic mixing strength can be probed down to $(1.4-10)\times 10^{-4}$ for dark photon mass between $15$ GeV to $2$ TeV. We also investigate the sensitivity of a future muon collider suggested by the Muon Accelerator Program (MAP) to the dark photon model at different center-of-mass energies. It is shown that a future muon collider is able to reach a sensitivity to kinetic mixing at the order of $10^{-4}$.

hep-ph

Exploring Axion-Like Particle Couplings through Single Top $tW$-Channel and Top Pair Production at the LHC

In this paper, we explore the interactions between light axion-like particles (ALPs) and top quarks, gluons, and W-bosons. Utilizing high-energy probes at the LHC, we probe these couplings in the context of single top quark production associated with a W-boson and an ALP. We analyze the latest LHC Run II data on $t\bar{t}$ spin correlation measurements to establish constraints on these couplings. Additionally, we compare these constraints with those derived from loop-induced couplings and indirect searches involving B-meson decays. Furthermore, we derive two-dimensional limits on the ALP couplings with top quarks and gluons.

hep-ph

Prospects for probing axionlike particles at a future hadron collider through top quark production

Axionlike particles (ALPs) emerge from spontaneously broken global symmetries in high energy extensions of the Standard Model (SM). This causes ALPs to be among the objectives of future experiments which intend to search for new physics beyond the SM. We discuss the reach of future pp collider FCC-hh in probing the ALP model parameters through top quark pair production associated with ALP ($t\bar{t}+\text{ALP}$) in a model-independent approach. The search is performed in the semileptonic decay mode of $t\bar{t}$ and the analysis is performed using a parametric simulation of the detector response for a projected integrated luminosity of $\rm 30~ab^{-1}$. It is shown that $t\bar{t}+\text{ALP}$ production at the FCC-hh is a promising channel with significant sensitivity to probe the ALP coupling with gluons. The ALP coupling with gluons obtained from HL-LHC and other experiments are presented for comparison.

hep-ph