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Updated: Jan 26, 2026

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A 100 KW Class Applied-field Magnetoplasmadynamic Thruster
Published on: December 22, 2018
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production at 100 TeV.
Shankha Banerjee1,2, Christoph Englert3, Michelangelo L Mangano4
11Institute for Particle Physics Phenomenology, Department of Physics, Durham University, Durham, DH1 3LE UK.
Summary
Higgs pair production studies at a future 100 TeV collider show promise for understanding electroweak symmetry breaking. The channel could constrain the Higgs boson self-coupling to 8%.
Area of Science:
- High Energy Physics
- Particle Physics
- Collider Physics
Background:
- Higgs pair production is key to understanding the TeV scale and electroweak symmetry breaking.
- Current Large Hadron Collider (LHC) studies are statistically limited.
- Future colliders offer higher energies and luminosities for enhanced sensitivity.
Purpose of the Study:
- Analyze the channel for Higgs pair production at a 100 TeV hadron collider.
- Evaluate the sensitivity potential of jet-associated Higgs pair production.
- Investigate the impact on Higgs boson self-coupling measurements.
Main Methods:
- Comparative analysis of and channels.
- Application of various analysis techniques.
- Focus on boosted regime sensitivity.
Main Results:
- Jet-associated Higgs pair production offers significant sensitivity at 100 TeV.
- The channel shows particular promise in the boosted regime.
- Potential to constrain the Higgs self-coupling to the 8% level.
Conclusions:
- Future 100 TeV colliders will significantly enhance Higgs pair production studies.
- Jet-associated production is a valuable channel for probing Higgs boson self-coupling.
- Precise measurements of Higgs self-coupling can be achieved.
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