Title of article
Realizations of thermal supersymmetry Original Research Article
Author/Authors
Jean-Pierre Derendinger، نويسنده , , Claudio Lucchesi، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1998
Pages
28
From page
483
To page
510
Abstract
We investigate realizations of supersymmetry at finite temperature in terms of thermal superfields, in a thermally constrained superspace: the Grassmann coordinates are promoted to be time dependent and antiperiodic, with a period given by the inverse temperature. This approach allows us to formulate a Kubo-Martin-Schwinger (KMS) condition at the level of thermal superfield propagators. The latter is proven directly in thermal superspace, and is shown to imply the correct (bosonic and fermionic) KMS conditions for the component fields. In thermal superspace, we formulate thermal covariant derivatives and supercharges and derive the thermal super-Poincaré algebra. Finally, we briefly investigate field realizations of this thermal supersymmetry algebra, focusing on the Wess-Zumino model. The thermal superspace formalism is used to characterize the breaking of global supersymmetry at finite temperature.
Keywords
* Finite temperature , * supersymmetry
Journal title
Nuclear Physics B
Serial Year
1998
Journal title
Nuclear Physics B
Record number
881229
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