7 research outputs found

    Feasibility studies for the measurement of time-like proton electromagnetic form factors from p¯ p→ μ+μ- at P ¯ ANDA at FAIR

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    This paper reports on Monte Carlo simulation results for future measurements of the moduli of time-like proton electromagnetic form factors, | GE| and | GM| , using the p¯ p→ μ+μ- reaction at P ¯ ANDA (FAIR). The electromagnetic form factors are fundamental quantities parameterizing the electric and magnetic structure of hadrons. This work estimates the statistical and total accuracy with which the form factors can be measured at P ¯ ANDA , using an analysis of simulated data within the PandaRoot software framework. The most crucial background channel is p¯ p→ π+π-, due to the very similar behavior of muons and pions in the detector. The suppression factors are evaluated for this and all other relevant background channels at different values of antiproton beam momentum. The signal/background separation is based on a multivariate analysis, using the Boosted Decision Trees method. An expected background subtraction is included in this study, based on realistic angular distributions of the background contribution. Systematic uncertainties are considered and the relative total uncertainties of the form factor measurements are presented

    Developing Insulin and BDNF Mimetics for Diabetes Therapy

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    Study of Excited Ξ\Xi Baryons with the PANDA Detector

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    The study of baryon excitation spectra provides insight into the inner structure of baryons. So far, most of the world-wide efforts have been directed towards NN^* and Δ\Delta spectroscopy. Nevertheless, the study of the double and triple strange baryon spectrum provides independent information to the NN^* and Δ\Delta spectra. The future antiproton experiment PANDA will provide direct access to final states containing a ΞˉΞ\bar{\Xi}\Xi pair, for which production cross sections up to μ\mub are expected in pˉp\bar{p}p reactions. With a luminosity of L=1031cm2s1L=10^{31}\,cm^{-2}s^{-1} in the first phase of the experiment, the expected cross sections correspond to a production rate of 106\sim 10^6 events//day. With a nearly 4π4\pi detector acceptance, PANDA will thus be a hyperon factory. In this study, reactions of the type pˉpΞˉ+Ξ\bar{p}p\rightarrow \bar{\Xi}^+ \Xi^{*-} as well as pˉpΞˉ+Ξ\bar{p}p\rightarrow \bar{\Xi}^{*+} \Xi^{-} with various decay modes are investigated. For the exclusive reconstruction of the signal events a full decay tree fit is used, resulting in reconstruction efficiencies between 3%3\,\% and 5%5\,\%. This allows high statistics data to be collected within a few weeks of data taking

    Study of excited Ξ baryons with the P¯ ANDA detector

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    The study of baryon excitation spectra provides insight into the inner structure of baryons. So far, most of the world-wide efforts have been directed towards N∗ and Δ spectroscopy. Nevertheless, the study of the double and triple strange baryon spectrum provides independent information to the N∗ and Δ spectra. The future antiproton experiment P¯ANDA will provide direct access to final states containing a Ξ¯ Ξ pair, for which production cross sections up to μb are expected in p¯p reactions. With a luminosity of L= 10 31 cm- 2 s- 1 in the first phase of the experiment, the expected cross sections correspond to a production rate of ∼106events/day. With a nearly 4 π detector acceptance, P¯ANDA will thus be a hyperon factory. In this study, reactions of the type p¯p → Ξ¯ +Ξ∗ - as well as p¯p → Ξ¯ ∗ +Ξ- with various decay modes are investigated. For the exclusive reconstruction of the signal events a full decay tree fit is used, resulting in reconstruction efficiencies between 3 and 5%. This allows high statistics data to be collected within a few weeks of data taking

    The potential of Λ and Ξ- studies with PANDA at FAIR

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    The antiproton experiment PANDA at FAIR is designed to bring hadron physics to a new level in terms of scope, precision and accuracy. In this work, its unique capability for studies of hyperons is outlined. We discuss ground-state hyperons as diagnostic tools to study non-perturbative aspects of the strong interaction, and fundamental symmetries. New simulation studies have been carried out for two benchmark hyperon-antihyperon production channels: p¯ p→ Λ¯ Λ and p¯ p→ Ξ¯ +Ξ-. The results, presented in detail in this paper, show that hyperon-antihyperon pairs from these reactions can be exclusively reconstructed with high efficiency and very low background contamination. In addition, the polarisation and spin correlations have been studied, exploiting the weak, self-analysing decay of hyperons and antihyperons. Two independent approaches to the finite efficiency have been applied and evaluated: one standard multidimensional efficiency correction approach, and one efficiency independent approach. The applicability of the latter was thoroughly evaluated for all channels, beam momenta and observables. The standard method yields good results in all cases, and shows that spin observables can be studied with high precision and accuracy already in the first phase of data taking with PANDA

    Feasibility studies for the measurement of time-like proton electromagnetic form factors from pˉpμ+μ\bar{p}p \rightarrow \mu ^+\mu ^- at PANDA\overline{\text {P}}\text {ANDA} at FAIR

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    International audienceThis paper reports on Monte Carlo simulation results for future measurements of the moduli of time-like proton electromagnetic form factors, GE|G_{E}| and GM|G_{M}|, using the pˉpμ+μ\bar{p} p \rightarrow \mu ^{+} \mu ^{-} reaction at PANDA\overline{\text {P}}\text {ANDA} (FAIR). The electromagnetic form factors are fundamental quantities parameterizing the electric and magnetic structure of hadrons. This work estimates the statistical and total accuracy with which the form factors can be measured at PANDA\overline{\text {P}}\text {ANDA}, using an analysis of simulated data within the PandaRoot software framework. The most crucial background channel is pˉpπ+π\bar{p} p \rightarrow \pi ^{+} \pi ^{-}, due to the very similar behavior of muons and pions in the detector. The suppression factors are evaluated for this and all other relevant background channels at different values of antiproton beam momentum. The signal/background separation is based on a multivariate analysis, using the Boosted Decision Trees method. An expected background subtraction is included in this study, based on realistic angular distributions of the background contribution. Systematic uncertainties are considered and the relative total uncertainties of the form factor measurements are presented
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