arXiv · hep-ph/9205228
Reparameterisation Invariance Constraints on Heavy Particle Effective Field Theories
Abstract
Since fields in the heavy quark effective theory are described by both a velocity and a residual momentum, there is redundancy in the theory: small shifts in velocity may be absorbed into a redefinition of the residual momentum. We demonstrate that this trivial reparameterisation invariance has non-trivial consequences: it relates coefficients of terms of different orders in the $1/m$ expansion and requires linear combinations of these operators to be multiplicatively renormalised. For example, the operator $-D^2/2m$ in the effective lagrangian has zero anomalous dimension, coefficient one, and does not receive any non-perturbative contributions from matching conditions. We also demonstrate that this invariance severely restricts the forms of operators which may appear in chiral lagrangians for heavy particles.
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Michael Luke, Aneesh V. Manohar. 1992-05-21. Reparameterisation Invariance Constraints on Heavy Particle Effective Field Theories. https://doi.org/10.1016/0370-2693(92)91786-9
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