Simulation study of ZHAH mode in Littlest Higgs Model with T-Parity
Tomonori Kusano, Eri Asakawa, Masaki Asano, Keisuke Fujii, Shigeki, Matsumoto, Rei Sasaki, Yosuke Takubo, Hitoshi Yamamoto

TL;DR
This study uses Monte Carlo simulations to explore how the International Linear Collider can measure parameters of the Littlest Higgs Model with T-parity, focusing on new gauge bosons and dark matter candidates.
Contribution
It demonstrates the feasibility of parameter measurements in the Littlest Higgs Model with T-parity at the ILC through detailed simulation analysis.
Findings
Masses of AH and ZH can be measured with 16.2% and 4.3% accuracy.
The vacuum expectation value can be determined with 4.3% accuracy.
Simulation results support potential for precise parameter determination in the model.
Abstract
We investigate a possibility to measure parameters of the Littlest Higgs model with T-parity at the ILC with sqrt(s) = 500 GeV. The model predicts new gauge bosons (AH, ZH, and WH), among which the heavy photon (AH) is a candidate for dark matter. Through Monte Carlo simulations of the process of e+ e- -> AH ZH, we show that the masses can be determined with accuracies of 16.2% for m_AH and 4.3% for m_ZH. In additionally, the vacuum expectation value can be determined with accuracies of 4.3%.
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Cosmology and Gravitation Theories · Dark Matter and Cosmic Phenomena
