Supersymmetric quantum field theory | Symmetry
In particle physics, supersymmetry breaking is the process to obtain a seemingly non-supersymmetric physics from a supersymmetric theory which is a necessary step to reconcile supersymmetry with actual experiments. It is an example of spontaneous symmetry breaking. In supergravity, this results in a slightly modified counterpart of the Higgs mechanism where the gravitinos become massive. Supersymmetry breaking occurs at supersymmetry breaking scale. The superpartners, whose mass would otherwise be equal to the mass of the regular particles in the absence of the SUSY breaking, become much heavier. In the domain of applicability of stochastic differential equations including, e.g, classical physics, spontaneous supersymmetry breaking encompasses such nonlinear dynamical phenomena as chaos, turbulence, pink noise, etc. (Wikipedia).
How do the additional symmetries of super-symmetry advance us toward a unified theory?
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From playlist Science Unplugged: Supersymmetry
Is there any evidence that supersymmetry exists, or is it purely theoretical?
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From playlist Science Unplugged: Supersymmetry
If supersymmetry is correct, what would that mean for nature's fundamental particles?
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From playlist Science Unplugged: Supersymmetry
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From playlist Science Unplugged: Supersymmetry
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