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"Miloi, Madalina"
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DsTau: study of tau neutrino production with 400 GeV protons from the CERN-SPS
by
Vladymyrov, Mykhailo
,
Nakano, Toshiyuki
,
Kose, Umut
in
CERN
,
Charm physics
,
Classical and Quantum Gravitation
2020
A
bstract
In the DsTau experiment at the CERN SPS (NA65), an independent and direct way to measure tau neutrino production following high energy proton interactions was proposed. As the main source of tau neutrinos is a decay of
D
s
mesons, produced in proton-nucleus interactions, the project aims at measuring a differential cross section of this reaction. The experimental method is based on a use of high resolution emulsion detectors for effective registration of events with short lived particle decays. Here we present the motivation of the study, details of the experimental technique, and the first results of the analysis of the data collected during test runs, which prove feasibility of the full scale study of the process in future.
Journal Article
Possible Experiment for the Demonstration of Neutron Waves Interaction with Spatially Oscillating Potential
2018
A wide range of problems in neutron optics is well described by a theory based on application of the effective potential model. It was assumed that the concept of the effective potential in neutron optics have a limited region of validity and ceases to be correct in the case of the giant acceleration of a matter. To test this hypothesis a new Ultra Cold neutron experiment for the observation neutron interaction with potential structure oscillating in space was proposed. The report is focused on the model calculations of the topography of sample surface that oscillate in space. These calculations are necessary to find an optimal parameters and geometry of the planned experiment.
Journal Article
Development of proton beam irradiation system for the NA65/DsTau experiment
2024
Tau neutrino is the least studied lepton of the Standard Model (SM). The NA65/DsTau experiment targets to investigate \\(D_s\\), the parent particle of the \\(_\\), using the nuclear emulsion-based detector and to decrease the systematic uncertainty of \\(_\\) flux prediction from over 50% to 10% for future beam dump experiments. In the experiment, the emulsion detectors are exposed to the CERN SPS 400 GeV proton beam. To provide optimal conditions for the reconstruction of interactions, the protons are required to be uniformly distributed over the detector's surface with an average density of \\(10^5~cm^-2\\) and the fluctuation of less than 10%. To address this issue, we developed a new proton irradiation system called the target mover. The new target mover provided irradiation with a proton density of \\(0.98~cm^-2\\) and the density fluctuation of \\(2.0 0.3\\)% in the DsTau 2021 run.
DsTau: Study of tau neutrino production with 400 GeV protons from the CERN-SPS
2019
In the DsTau experiment at the CERN SPS, an independent and direct way to measure tau neutrino production following high energy proton interactions was proposed. As the main source of tau neutrinos is a decay of Ds mesons, produced in proton-nucleus interactions, the project aims at measuring a differential cross section of this reaction. The experimental method is based on a use of high resolution emulsion detectors for effective registration of events with short lived particle decays. Here we present the motivation of the study, details of the experimental technique, and the first results of the analysis of the data collected during test runs, which prove feasibility of the full scale study of the process in future.