Chiral condensate in a constant electromagnetic field
2007; American Institute of Physics; Volume: 76; Issue: 5 Linguagem: Inglês
10.1103/physrevc.76.055201
ISSN1538-4497
AutoresThomas D. Cohen, David A. McGady, Elizabeth S. Werbos,
Tópico(s)Black Holes and Theoretical Physics
ResumoWe study the shift of the chiral condensate in a constant electromagnetic field in the context of chiral perturbation theory. Using the Schwinger proper-time formalism, we derive a one-loop expression correct to all orders in ${m}_{\ensuremath{\pi}}^{2}/\mathit{eH}$. Our result correctly reproduces a previously derived ``low-energy theorem'' for ${m}_{\ensuremath{\pi}}=0$. We show that it is essential to include corrections due to nonvanishing ${m}_{\ensuremath{\pi}}$ for a theorem of low energy to have any approximate regime of validity in the physical universe. We generalize these results to systems containing electric fields and discuss the regime of validity for the results. In particular, we discuss the circumstances in which the method formally breaks down due to pair creation in an electric field.
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