The Higgs boson 1. Consider a proton that is incident on a target proton (at rest). What is the threshold energy needed to produce a Higg's Boson. Use the following estimates of the masses: m, = 1 [GeV] and mH = 125 [GeV]. The Higgs boson will eventually decay into leptons and protons (a particle physicist will tell you that the Higgs boson will decay through different channels). The threshold energy is the minimum energy needed for all these processes (channels) to be observed as confirmed in 2012 at the Large Hadron Collider (LHC).

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The Higgs boson 1. Consider a proton that is incident on a target proton
(at rest). What is the threshold energy needed to produce a Higg's Boson. Use the
following estimates of the masses: m, = 1 [GeV] and mH = 125 [GeV]. The Higgs boson
will eventually decay into leptons and protons (a particle physicist will tell you that the
Higgs boson will decay through different channels). The threshold energy is the minimum
energy needed for all these processes (channels) to be observed as confirmed in 2012 at the
Large Hadron Collider (LHC).
Transcribed Image Text:1. The Higgs boson 1. Consider a proton that is incident on a target proton (at rest). What is the threshold energy needed to produce a Higg's Boson. Use the following estimates of the masses: m, = 1 [GeV] and mH = 125 [GeV]. The Higgs boson will eventually decay into leptons and protons (a particle physicist will tell you that the Higgs boson will decay through different channels). The threshold energy is the minimum energy needed for all these processes (channels) to be observed as confirmed in 2012 at the Large Hadron Collider (LHC).
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