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pro vyhledávání: '"Marzocca P"'
Collinear emission of $W$ bosons off a high-energy muon induces a large muon-neutrino component among the Parton Distribution Functions (PDFs) of a muon. In this paper we study the phenomenology related to the $\nu_\mu$ PDF at future high-energy muon
Externí odkaz:
http://arxiv.org/abs/2410.21383
This paper introduces the Parsimonious Dynamic Mode Decomposition (parsDMD), a novel algorithm designed to automatically select an optimally sparse subset of dynamic modes for both spatiotemporal and purely temporal data. By incorporating time-delay
Externí odkaz:
http://arxiv.org/abs/2410.16656
Autor:
Candon, Michael, Balajewicz, Maciej, Delgado-Gutierrez, Arturo, Marzocca, Pier, Dowell, Earl H.
Nonlinear aeroelastic reduced-order models (ROMs) based on machine learning or artificial intelligence algorithms can be complex and computationally demanding to train, meaning that for practical aeroelastic applications, the conservative nature of l
Externí odkaz:
http://arxiv.org/abs/2408.16941
Autor:
Marzocca, David, Stanzione, Alfredo
We study the role of the $Z/\gamma$-interference parton distribution function (PDF) in high-energy muon colliders. We review how this PDF emerges when electroweak interactions are applied to the collinear splitting process and show that the leading-o
Externí odkaz:
http://arxiv.org/abs/2408.13191
Machine learning and artificial intelligence algorithms typically require large amount of data for training. This means that for nonlinear aeroelastic applications, where small training budgets are driven by the high computational burden associated w
Externí odkaz:
http://arxiv.org/abs/2407.08161
Publikováno v:
J. High Energ. Phys. 2024, 17 (2024)
We project the reach of future lepton colliders for measuring CKM elements from direct observations of $W$ decays. We focus our attention to $|V_{cs}|$ and $|V_{cb}|$ determinations, using FCC-ee as case study. We employ state-of-the-art jet flavor t
Externí odkaz:
http://arxiv.org/abs/2405.08880
We study the implications of the observed excess in $B^+ \to K^+ \nu \bar{\nu}$ under the assumption of Rank-One Flavour Violation, i.e. that New Physics couples to a single specific direction in flavour space. By varying this direction we perform an
Externí odkaz:
http://arxiv.org/abs/2404.06533
Publikováno v:
Mechanical Systems and Signal processing, Volume 220 , 1 November 2024, 111712
Flutter flight test involves the evaluation of the airframes aeroelastic stability by applying artificial excitation on the aircraft lifting surfaces. The subsequent responses are captured and analyzed to extract the frequencies and damping character
Externí odkaz:
http://arxiv.org/abs/2403.11521
Autor:
Ahdida, C., Arduini, G., Balazs, K., Bartosik, H., Bernhard, J., Boyarsky, A., Brod, J., Brugger, M., Calviani, M., Ceccucci, A., Crivellin, A., D'Ambrosio, G., De Lellis, G., Döbrich, B., Fraser, M., Ximenes, R. Franqueira, Golutvin, A., Alonso, M. Gonzalez, Goudzovski, E., Grenard, J. -L., Heeck, J., Jaeckel, J., Jacobsson, R., Kadi, Y., Kahlhoefer, F., Kling, F., Koval, M., Lanfranchi, G., Lazzeroni, C., Mahmoudi, F., Marzocca, D., Massri, K., Moulson, M., Neshatpour, S., Osborne, J., Pospelov, M., Prebibaj, T., Rabemananjara, T. R., Rembser, Ch., Rojo, J., Rozanov, A., Ruggiero, G., Rumolo, G., Schnell, G., Schott, M., Soreq, Y., Spadaro, T., Vallée, C., Zickler, T., Zupan, J.
The Experimental Cavern North 3 (ECN3) is an underground experimental cavern on the CERN Pr\'evessin site. ECN3 currently hosts the NA62 experiment, with a physics programme devoted to rare kaon decays and searches of hidden particles approved until
Externí odkaz:
http://arxiv.org/abs/2310.17726
Publikováno v:
European Physical Journal C: Particles and Fields, Vol 84, Iss 11, Pp 1-24 (2024)
Abstract We study the implications of the observed excess in $$B^+ \rightarrow K^+ \nu \bar{\nu }$$ B + → K + ν ν ¯ under the assumption of Rank-One Flavour Violation, i.e. that New Physics couples to a single specific direction in flavour space
Externí odkaz:
https://doaj.org/article/6b6aa5afbf75411390368a7ea33b63d0