POLE MASS OF THE HEAVY-QUARK - PERTURBATION-THEORY AND BEYOND

被引:346
作者
BIGI, II
SHIFMAN, MA
URALTSEV, NG
VAINSHTEIN, AI
机构
[1] UNIV NOTRE DAME LAC, DEPT PHYS, NOTRE DAME, IN 46556 USA
[2] ST PETERSBURG NUCL PHYS INST, ST PETERSBURG 188350, RUSSIA
[3] BUDKER NUCL PHYS INST, NOVOSIBIRSK 630090, RUSSIA
[4] UNIV MINNESOTA, INST THEORET PHYS, MINNEAPOLIS, MN 55455 USA
关键词
D O I
10.1103/PhysRevD.50.2234
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The key quantity of the heavy quark theory is the quark mass m(Q). Since quarks are unobservable one can suggest different definitions of m(Q). One of the most popular choices is the pole quark routinely used in perturbative calculations and in some analyses based on heavy quark expansions. We show that no precise definition of the pole mass can be given in the full theory once nonperturbative effects are included. Any definition of this quantity suffers from an intrinsic uncertainty of order LAMBDA(QCD)/m(Q). This fact is succinctly described by the existence of an infrared renormalon generating a factorial divergence in the high-order coefficients of the alpha(s) series; the corresponding singularity in the Borel plane is situated at 2pi/b. A peculiar feature is that this renormalon is not associated with the matrix element of a local operator. The difference LAMBDABAR = M(HQ) - m(Q)pole can still be defined by heavy quark effective theory, but only at the price of introducing an explicit dependence on a normalization point mu: LAMBDA(mu)BAR. Fortunately the pole mass mQ(0) per se does not appear in calculable observable quantities.
引用
收藏
页码:2234 / 2246
页数:13
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