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From protons to collisions…

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Theoretical Physics - From Outer Space to Plasma
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We learn about the Higgs Boson and its interactions at the LHC by examining the debris produced by colliding protons head-on at unprecedented high energies.
However, we know from our theory of strong interactions - quantum chromodynamics (QCD) - that protons themselves are highly complex bound states of more fundamental 'quarks', held together by the force carriers of QCD, the 'gluons'. The question is then: how do we go from the collision of these complicated protons to a theoretical prediction that we can use to test the properties of the Higgs boson itself? In this talk, I will discuss what we know about the proton, and how we apply this to LHC collisions and our understanding of the Higgs sector.

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Theoretical Physics - From Outer Space to Plasma

What the Large Hadron Collider is telling us about the Higgs sector and its new interactions

Over the past two years, CERN’s Large Hadron Collider (LHC) has started to directly probe a qualitatively new class of interactions, associated with the Higgs boson.
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Theoretical Physics - From Outer Space to Plasma

... from collisions to the Higgs boson

To study the Higgs boson at the LHC we also need to understand how highly energetic quarks and gluons interact, among themselves and with the Higgs.
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Episode Information

Series
Theoretical Physics - From Outer Space to Plasma
People
Lucian Harland-Lang
Keywords
Physics
CERN
Higgs Boson
Department: Department of Physics
Date Added: 16/05/2019
Duration: 00:36:13

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