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Paolo Ciafaloni

Researcher at Istituto Nazionale di Fisica Nucleare

Publications -  64
Citations -  3632

Paolo Ciafaloni is an academic researcher from Istituto Nazionale di Fisica Nucleare. The author has contributed to research in topics: Electroweak interaction & Standard Model. The author has an hindex of 31, co-authored 63 publications receiving 3417 citations. Previous affiliations of Paolo Ciafaloni include University of Pisa & Autonomous University of Barcelona.

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TESLA Technical Design Report Part III: Physics at an e+e- Linear Collider

R. D. Heuer, +237 more
TL;DR: The TESLA Technical Design Report Part III: Physics at an e+e-linear Collider as mentioned in this paper, Part III, Section 3, Section 2.1, Section 4.
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Weak Corrections are Relevant for Dark Matter Indirect Detection

TL;DR: In this article, the authors compute how the inclusion of electroweak corrections significantly alter the energy spectra when the mass M of dark matter particles is larger than the electroweak scale: soft electroweak gauge bosons are copiously radiated opening new channels in the final states which otherwise would be forbidden if such corrections are neglected.
Journal ArticleDOI

Weak Corrections are Relevant for Dark Matter Indirect Detection

TL;DR: In this paper, the authors compute how the inclusion of electroweak corrections significantly alter the energy spectra when the mass M of dark matter particles is larger than the electroweak scale: soft electroweak gauge bosons are copiously radiated opening new channels in the final states which otherwise would be forbidden if such corrections are neglected.
Journal ArticleDOI

Bloch-nordsieck violating electroweak corrections to inclusive TeV scale hard processes

TL;DR: It is pointed out that, since the colliders' initial states carry a definite non-Abelian flavor, electroweak radiative corrections to inclusive hard cross sections at the TeV scale are affected by peculiar Bloch-Nordsieck violating double logs.
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Radiative correction effects of a very heavy top

TL;DR: In this article, the dominant radiative correction effects in all electroweak precision tests can be exactly characterized in terms of two quantities, the ϱ-mparameter and the GIM-violating Z → b b coupling.