Title of article :
One-loop effective potential of N=1 supersymmetric theory and decoupling effects Original Research Article
Author/Authors :
I.L. Buchbinder، نويسنده , , M. Cveti?، نويسنده , , A.Yu. Petrov، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
61
From page :
358
To page :
418
Abstract :
We study the decoupling effects in N=1 (global) supersymmetric theories with chiral superfields at the one-loop level. Examples of gauge neutral chiral superfields with minimal (renormalizable) as well as non-minimal (non-renormalizable) couplings are considered, and decoupling in gauge theories with U(1) gauge superfields that couple to heavy chiral matter is studied. We calculate the one-loop corrected effective Lagrangians that involve light fields and heavy fields with mass of order M. Elimination of heavy fields by equations of motion leads to decoupling effects with terms that grow logarithmically with M. These corrections renormalize light fields and couplings in the theory (in accordance with the “decoupling theorem”). When the field theory is an effective theory of the underlying fundamental theory, like superstring theory, where the couplings are calculable, such decoupling effects modify the low energy predictions for the effective couplings of light fields. In particular, for the class of string vacua with an “anomalous” U(1), the vacuum restabilization triggers decoupling effects, which can significantly modify the low energy predictions for couplings of the surviving light fields. We also demonstrate that quantum corrections to the chiral potential depending on massive background superfields and corresponding to supergraphs with internal massless lines and external massive lines can also arise at the two-loop level.
Journal title :
Nuclear Physics B
Serial Year :
2000
Journal title :
Nuclear Physics B
Record number :
882116
Link To Document :
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