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Vadim Baru

Researcher at Kurchatov Institute

Publications -  121
Citations -  3154

Vadim Baru is an academic researcher from Kurchatov Institute. The author has contributed to research in topics: Pion & Nucleon. The author has an hindex of 30, co-authored 117 publications receiving 2652 citations. Previous affiliations of Vadim Baru include Forschungszentrum Jülich & Institute on Taxation and Economic Policy.

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Evidence that the a0(980) and f0(980) are not elementary particles

TL;DR: In this article, the authors generalize a model-independent approach of Weinberg to the case of unstable particles and apply it to the a 0 (980) and f 0(980) resonances and address the question whether these particles are predominantly genuine, confined quark states or governed by mesonic components.
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Abashian-Booth-Crowe Effect in Basic Double-Pionic Fusion: A New Resonance?

Patrik Adlarson, +122 more
TL;DR: An exclusive and kinematically complete high-statistics measurement of the basic double-pionic fusion reaction pn→dπ( 0)π(0) over the full energy region of the ABC effect reveals a pronounced low-mass enhancement in the ππ-invariant mass spectrum.
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Precision calculation of threshold π−d scattering, πN scattering lengths, and the GMO sum rule

TL;DR: Baru et al. as mentioned in this paper used chiral perturbation theory (ChPT) to calculate the π − d scattering length with an accuracy of a few percent, including isospin-violating corrections in both the two and three-body sectors.
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Antiproton--Proton Scattering Experiments with Polarization

Vincenzo Barone, +178 more
TL;DR: In this paper, the authors describe the physics case of the PAX experiment using polarized antiprotons, which has recently been proposed for the new Facility for Antiprotons and Ions Research (FAIR) at GSI--Darmstadt.
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Precision calculation of the π−d scattering length and its impact on threshold πN scattering

TL;DR: In this article, the isoscalar and isovector pion-nucleon scattering lengths were extracted from pionic deuterium and pionic hydrogen atoms using chiral perturbation theory.