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Patrick Meade

Researcher at C. N. Yang Institute for Theoretical Physics

Publications -  86
Citations -  8677

Patrick Meade is an academic researcher from C. N. Yang Institute for Theoretical Physics. The author has contributed to research in topics: Electroweak interaction & Large Hadron Collider. The author has an hindex of 43, co-authored 74 publications receiving 7315 citations. Previous affiliations of Patrick Meade include Stony Brook University & Institute for Advanced Study.

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FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2

A. Abada, +1494 more
TL;DR: In this article, the authors present the second volume of the Future Circular Collider Conceptual Design Report, devoted to the electron-positron collider FCC-ee, and present the accelerator design, performance reach, a staged operation scenario, the underlying technologies, civil engineering, technical infrastructure, and an implementation plan.
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Simplified Models for LHC New Physics Searches

Daniele S. M. Alves, +100 more
- 14 Sep 2012 - 
TL;DR: A collection of simplified models relevant to the design of new-physics searches at the Large Hadron Collider (LHC) and the characterization of their results is presented in this paper.
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FCC-hh: The Hadron Collider

A. Abada, +1499 more
TL;DR: In this paper, the authors describe the detailed design and preparation of a construction project for a post-LHC circular energy frontier collider in collaboration with national institutes, laboratories and universities worldwide, and enhanced by a strong participation of industrial partners.
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FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1

A. Abada, +1504 more
TL;DR: In this article, the physics opportunities of the Future Circular Collider (FC) were reviewed, covering its e+e-, pp, ep and heavy ion programs, and the measurement capabilities of each FCC component, addressing the study of electroweak, Higgs and strong interactions.
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General Gauge Mediation

TL;DR: A formalism for computing the soft terms in the generic model is presented which allows us to identify features of the entire class of gauge mediation models and to distinguish them from specific signatures of various subclasses.