SCALING LAWS, RENORMALIZATION-GROUP FLOW AND THE CONTINUUM-LIMIT IN NONCOMPACT LATTICE QED

被引:64
|
作者
GOCKELER, M
HORSLEY, R
RAKOW, P
SCHIERHOLZ, G
SOMMER, R
机构
[1] FORSCHUNGSZENTRUM JULICH, HOCHSTLEISTUNGSRECHENZENTRUM, THEORIE ELEMENTARTEILCHEN GRP, W-5170 JULICH 1, GERMANY
[2] FREE UNIV BERLIN, INST THEORET PHYS, W-1000 BERLIN, GERMANY
[3] DESY, W-2000 HAMBURG 52, GERMANY
[4] CERN, CH-1211 GENEVA 23, SWITZERLAND
关键词
D O I
10.1016/0550-3213(92)90693-6
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
We investigate the ultra-violet behavior of non-compact lattice QED with light staggered fermions. The main question is whether QED is a non-trivial theory in the continuum limit, and if not, what is its range of validity as a low-energy theory. Perhaps the limited range of validity could offer an explanation of why the fine-structure constant is so small. Non-compact QED undergoes a second-order chiral phase transition at strong coupling, at which the continuum limit can be taken. We examine the phase diagram and the critical behavior of the theory in detail. Moreover, we address the question as to whether QED confines in the chirally broken phase. This is done by investigating the potential between static external charges. We then compute the renormalized charge and derive the Callan-Symanzik beta-function in the critical region. No ultra-violet stable zero is found. Instead, we find that the evolution of charge is well described by renormalized perturbation theory, and that the renormalized charge vanishes at the critical point. The consequence is that QED can only be regarded as a cut-off theory. We evaluate the maximum value of the cut-off as a function of the renormalized charge. Next, we compute the masses of fermion-antifermion composite states. The scaling behavior of these masses is well described by an effective action with mean-field critical exponents plus logarithmic corrections. This indicates that also the matter sector of the theory is non-interacting. Finally, we investigate and compare the renormalization group flow of different quantities. Altogether, we find that QED is a valid theory only for small renormalized charges.
引用
收藏
页码:713 / 772
页数:60
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