Particles and Field Theory  

Classical Field theory

> In general.
> Interactions.
> Boundaries in field theory.
> Topological defects.
> Holography.
> Lattice field theory.
> Lattice gauge theory.

Particle Physics

> Theoretical particle physics.
> Experimental particle physics.
> History.
> Standard model and Beyond.
> Electroweak theory.
> Unified theories.
> Grand unified theories.
> Supersymmetry.
> Supergravity.
> Composite models.
> Monopoles.
> String theory.
> String phenomenology.
> M-theory.
> Brane world.
> CP violation.
 

Quantum Field Theory

> In general.
> Algebraic and axiomatic.
> Other approaches.
> Effective theories.
> Modified quantum field theories.
> Formalism and techniques.
> Path integrals.
> Green functions.
> Vacuum and other States.
>
Fock space.
> Instantons.
> Unruh effect.
> Effects and Phenomenology.
> Anomalies.
> Casimir effect.
> CPT theorem.
> Regularization.
> Renormalization.
> Renormalization group.
> Entanglement.

In Curved Spacetime

> In general.
> Effects.
> Types of backgrounds.

Particle Models and Effects

> Particle models.
> Particle descriptions.
> Relativistic particles.
> Quantum particles.
> Spinning particles.
> Particle effects.
> Particle statistics.
> Spin-statistics theorem.
> Solitons.

Specific Particles

> Types, in general.
> Electrons.
> Neutrinos.
> Neutrinos – Astrophysical.
> Hadrons, Protons, Neutrons.
> Higgs boson.
> Photons.
> Gravitons.
> Axions.

More...

blue bullet s.a. Quantum Theory.
blue bullet s.a. Quantum Gravity.
blue bullet s.a. Physical Systems.
blue bullet s.a. Concepts and Tools.


main page – abbreviations – journals – comments – other sites – acknowledgements
send feedback and suggestions to bombelli at olemiss.edu – modified 1 mar 2017