Changes for page Xabier Cid Vidal
Last modified by Ricardo Julio Rodríguez Fernández on 2024/06/28 13:18
From version 9.1
edited by Ricardo Julio Rodríguez Fernández
on 2024/06/28 10:09
on 2024/06/28 10:09
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To version 12.1
edited by Ricardo Julio Rodríguez Fernández
on 2024/06/28 10:33
on 2024/06/28 10:33
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... ... @@ -1,5 +1,6 @@ 1 1 === Creating classifiers to detect LLPs at LHCb === 2 -==== Supervisor: Emilio Xosé Rodríguez Fernández 2 +==== Supervisor: Emilio Xosé Rodríguez Fernández ==== 3 +==== Summer Fellow: Xoaquín Tarrío Mallo 3 3 ==== 4 4 5 5 Several Beyond the Standard Model theories suggest that Long-Lived Particles (LLPs) might mostly evade current particle physics detectors but have a small chance of decaying into known elementary particles, such as muons, making them potentially detectable. ... ... @@ -9,7 +9,8 @@ 9 9 10 10 === Finding the best classifier to observe eta' -> mu mu at LHCb === 11 11 ==== Supervisor: Miguel Fernández Gómez ==== 12 -==== Summer Fellow: Pablo Moreno García 13 +==== Summer Fellow: Pablo Moreno García ==== 14 +==== Summer Fellow: Diego Asín de Alcalá 13 13 ==== 14 14 15 15 Decays of the pseudoscalar resonances eta and eta' could turn out to be an important factor in fine-tuning the theoretical predictions for g_mu -2, one of the larger discrepancies between the Standard Model of Particle Physics and experimental measurements. In particular, eta' -> mu mu has not been observed yet, and doing so could represent a landmark achievement for the field, as well as the experiment that does it. ... ... @@ -30,7 +30,8 @@ 30 30 31 31 32 32 === Neural networks for LLP discovery === 33 -==== Supervisor: Emilio Xosé Rodríguez Fernández 35 +==== Supervisor: Emilio Xosé Rodríguez Fernández ==== 36 +==== Summer Fellow: Alejandro Novo Cal 34 34 ==== 35 35 36 36 LLPs are an exciting avenue to discover new physics, but they are also known to be very challenging to detect, specifically in the context of hadronic colliders with large backgrounds. Detectors such as LHCb have been trying to find one of such particles, with no success so far.