Zu jeder Symmetrie gehört mindestens ein Austauschteilchen ( Eichboson ), das eine der fundamentalen Kräfte vermittelt.
Wenn man allerdings die exakte Eichsymmetrie anwendet, hat das Eichboson keine Masse, was Beobachtungen in Experimenten widerspricht.
Ähnliches gilt für Quarks und Leptonen.
www.universe-cluster.deOne gauge symmetry includes at least one exchange particle ( gauge boson ), which transmits one of the fundamental forces.
However, when gauge symmetry is applied the gauge boson does not have mass, which contradicts experimental observations.
Something similar applies to quarks and leptons, too.
www.universe-cluster.deDas Standardmodell, in dem die Elementarteilchen beschrieben sind, beruht auf Eichsymmetrien.
Zu jeder Symmetrie gehört mindestens ein Austauschteilchen (Eichboson), das eine der fundamentalen Kräfte vermittelt.
Wenn man allerdings die exakte Eichsymmetrie anwendet, hat das Eichboson keine Masse, was Beobachtungen in Experimenten widerspricht.
www.universe-cluster.deThe standard model, where elementary particles are described, is based on gauge symmetries.
One gauge symmetry includes at least one exchange particle (gauge boson), which transmits one of the fundamental forces.
However, when gauge symmetry is applied the gauge boson does not have mass, which contradicts experimental observations.
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