The successes and shortcomings of the Standard Model are reviewed, with emphasis on the reasons motivating the need to extend it. The basic elements of grand unification and supersymmetry are described, exploring their phenomenological implications for gauge coupling unification, proton decay, fermion masses, neutrino physics, collider signatures, dark matter, rare decays and anomalous magnetic moments. The forthcoming generation of experiments will certainly expose these ideas to several essential tests
The origin of electroweak symmetry breaking is about to be explored by the LHC, which has started ta...
After a quick tour through the present status of the Standard Model, an attempt is made to set up a ...
I argue that the Fermilab Tevatron will contribute to our knowledge of the pieces of the standard mo...
This paper is based on lectures presented to mathematical physicists and attempts to provide an over...
By 1973, the theoretical foundations of the Standard Model of fundamental interactions had been comp...
After discussing alternative scenarios for the origins of the electroweaksymmetry breaking, I briefl...
Four lectures on experimental test of the standard model presented at the Advanced Summer Institute ...
Rapporteur talk at the International Europhysics Conference on High Energy Physics, Brussels (Belgiu...
The present lectures contain an introduction to low energy supersymmetry, a new symmetry that ...
We summarize the potential of high--energy \ee linear colliders for discovering, and in case of disc...
This set of lectures provides an elementary introduction to the standard electroweak theory, followe...
The simplest interpretation of the global success of the Standard Model is that new physics decouple...
We introduce recent research topics in beyond the Standard Model particle physics with Supersymmetry...
We introduce recent research topics in beyond the Standard Model particle physics with Supersymmetry...
The Standard Model of particle physics encapsulates our current best understanding of physics at the...
The origin of electroweak symmetry breaking is about to be explored by the LHC, which has started ta...
After a quick tour through the present status of the Standard Model, an attempt is made to set up a ...
I argue that the Fermilab Tevatron will contribute to our knowledge of the pieces of the standard mo...
This paper is based on lectures presented to mathematical physicists and attempts to provide an over...
By 1973, the theoretical foundations of the Standard Model of fundamental interactions had been comp...
After discussing alternative scenarios for the origins of the electroweaksymmetry breaking, I briefl...
Four lectures on experimental test of the standard model presented at the Advanced Summer Institute ...
Rapporteur talk at the International Europhysics Conference on High Energy Physics, Brussels (Belgiu...
The present lectures contain an introduction to low energy supersymmetry, a new symmetry that ...
We summarize the potential of high--energy \ee linear colliders for discovering, and in case of disc...
This set of lectures provides an elementary introduction to the standard electroweak theory, followe...
The simplest interpretation of the global success of the Standard Model is that new physics decouple...
We introduce recent research topics in beyond the Standard Model particle physics with Supersymmetry...
We introduce recent research topics in beyond the Standard Model particle physics with Supersymmetry...
The Standard Model of particle physics encapsulates our current best understanding of physics at the...
The origin of electroweak symmetry breaking is about to be explored by the LHC, which has started ta...
After a quick tour through the present status of the Standard Model, an attempt is made to set up a ...
I argue that the Fermilab Tevatron will contribute to our knowledge of the pieces of the standard mo...