Introductory remarks.- Aspects of the geometry of twistor space.- Massive systems and their internal symmetries.- Twistor quantization: Zero rest mass fields.- Twistor quantization: Massive fields.- The low-lying baryons.- Mesons, resonances, and bound states.- Leptons and weak interactions.- Sheaves and cohomology.- Applications of complex manifold techniques to elementary particle physics.
Introductory remarks.- Aspects of the geometry of twistor space.- Massive systems and their internal symmetries.- Twistor quantization: Zero rest mass fields.- Twistor quantization: Massive fields.- The low-lying baryons.- Mesons, resonances, and bound states.- Leptons and weak interactions.- Sheaves and cohomology.- Applications of complex manifold techniques to elementary particle physics.
Introductory remarks.- Aspects of the geometry of twistor space.- Massive systems and their internal symmetries.- Twistor quantization: Zero rest mass fields.- Twistor quantization: Massive fields.- The low-lying baryons.- Mesons, resonances, and bound states.- Leptons and weak interactions.- Sheaves and cohomology.- Applications of complex manifold techniques to elementary particle physics.
Introductory remarks.- Aspects of the geometry of twistor space.- Massive systems and their internal symmetries.- Twistor quantization: Zero rest mass fields.- Twistor quantization: Massive fields.- The low-lying baryons.- Mesons, resonances, and bound states.- Leptons and weak interactions.- Sheaves and cohomology.- Applications of complex manifold techniques to elementary particle physics.
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