Ladder Approximation for Spontaneous Chiral-Symmetry Breaking
Thomas Appelquist, Kenneth Lane, Uma Mahanta
Abstract
Thomas Appelquist, Kenneth Lane, Uma Mahanta
Abstract
This paper examines the validity of the ladder approximation in gauge theories such as technicolor theories in which the coupling is a slowly running function of momentum and is large enough to trigger spontaneous chiral-symmetry breaking. We find that the next-higher-order terms beyond the ladder approximation amount to only a 1%-20% correction, depending on the fermion representation. This indicates that the ladder expansion may provide a much better description of chiral-symmetry breaking than previously thought.
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This paper examines the validity of the ladder approximation in gauge theories such as technicolor theories in which the coupling is a slowly running function of momentum and is large enough to trigger spontaneous chiral-symmetry breaking. We find that the next-higher-order terms beyond the ladder approximation amount to only a 1%-20% correction, depending on the fermion representation. This indicates that the ladder expansion may provide a much better description of chiral-symmetry breaking than previously thought.
Key concepts: Chiral symmetry breaking, Physics, Spontaneous symmetry breaking, Technicolor, Symmetry breaking, Explicit symmetry breaking, Symmetry (geometry), Theoretical physics