Article: Research from N. Boulanger and colleagues provide new insights into high energy physics.

"Following the general formalism presented in arXiv:0812.3615 - referred to as Paper I - we derive the unfolded equations of motion for tensor fields of arbitrary shape and mass in constantly curved backgrounds by radial reduction of Skvortsov's equations in one higher dimension. The complete unfolded system is embedded into a single master field, valued in a tensorial Schur module realized equivalently via either bosonic (symmetric basis) or fermionic (anti-symmetric basis) vector oscillators," scientists writing in the Journal of High Energy Physics report.

"At critical masses the reduced Weyl zero-form modules become indecomposable. We explicitly project the ...

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