BARYON MASS SPLITTINGS IN CHIRAL PERTURBATION-THEORY

被引:34
作者
BANERJEE, MK
MILANA, J
机构
[1] Department of Physics, University of Maryland, College Park
来源
PHYSICAL REVIEW D | 1995年 / 52卷 / 11期
关键词
D O I
10.1103/PhysRevD.52.6451
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Baryon masses are calculated in chiral perturbation theory at the one-loop O(p(3)) level in the chiral expansion and to leading order in the heavy baryon expansion. Ultraviolet divergences occur requiring the introduction of counterterms. Despite this neccessity, no knowledge of the counterterms is required to determine the violations of the Gell-Mann-Okubo mass relation for the baryon octet or of the decuplet equal-mass-spacing rule, as all divergences cancel exactly at this order. For the same reason all references to an arbitrary scale mu are absent. Neither of these features continue to higher powers in the chiral expansion. We also discuss critically the absolute neccessity of simultaneously going beyond the leading-order heavy baryon expansion, if one goes beyond the one-loop O(p(3)) level. We point out that these corrections in 1/M(B) generate new divergences proportional to m(4)/M(10). These divergences together with the divergences occurring in one-loop O(p(4)) graphs of chiral perturbation theory are taken care of by the same set of counterterms. Because of these unknown counterterms one cannot predict the baryon mass splittings at the one-loop O(p(4)) level even if the parameters of all L(1)(pi N) terms are known. We point out another serious problem of going to the one-loop O(p(4)) level. When the decuplet is off its mass shell there are additional pi N Delta and pi Delta Delta interaction terms. These interactions contribute not only to the divergent terms proportional to (m(4)/M(10)), but also to nonanalytic terms such as proportional to (m(4)/M(10))ln(m/M(10)). Thus without knowledge of the coupling constants appearing in these interactions one cannot carry out a consistent one-loop O(p(4)) level calculation.
引用
收藏
页码:6451 / 6460
页数:10
相关论文
共 43 条
[1]   PION RADIUS AND ISOVECTOR NUCLEON RADII IN LIMIT OF SMALL PION MASS [J].
BEG, MAB ;
ZEPEDA, A .
PHYSICAL REVIEW D, 1972, 6 (10) :2912-&
[2]   PROBLEMS OF DESCRIBING SPIN-3/2 BARYON RESONANCES IN THE EFFECTIVE LAGRANGIAN THEORY [J].
BENMERROUCHE, M ;
DAVIDSON, RM ;
MUKHOPADHYAY, NC .
PHYSICAL REVIEW C, 1989, 39 (06) :2339-2348
[3]   CRITICAL ANALYSIS OF BARYON MASSES AND SIGMA-TERMS IN HEAVY BARYON CHIRAL PERTURBATION-THEORY [J].
BERNARD, V ;
KAISER, N ;
MEISSNER, UG .
ZEITSCHRIFT FUR PHYSIK C-PARTICLES AND FIELDS, 1993, 60 (01) :111-119
[4]   CHIRAL STRUCTURE OF THE NUCLEON [J].
BERNARD, V ;
KAISER, N ;
KAMBOR, J ;
MEISSNER, UG .
NUCLEAR PHYSICS B, 1992, 388 (02) :315-345
[5]   STRONG AND ELECTROMAGNETIC DECAYS OF THE BARYON DECUPLET [J].
BUTLER, MN ;
SAVAGE, MJ ;
SPRINGER, RP .
NUCLEAR PHYSICS B, 1993, 399 (01) :69-85
[6]   ELECTROMAGNETIC POLARIZABILITY OF THE NUCLEON IN CHIRAL PERTURBATION-THEORY [J].
BUTLER, MN ;
SAVAGE, MJ .
PHYSICS LETTERS B, 1992, 294 (3-4) :369-374
[7]   THE ROLE OF THE DELTA ISOBAR IN CHIRAL PERTURBATION-THEORY AND HEDGEHOG SOLITON MODELS [J].
COHEN, TD ;
BRONIOWSKI, W .
PHYSICS LETTERS B, 1992, 292 (1-2) :5-9
[8]  
Donoghue J. F., 2014, DYNAMICS STANDARD MO
[9]   NUCLEONS WITH CHIRAL LOOPS [J].
GASSER, J ;
SAINIO, ME ;
SVARC, A .
NUCLEAR PHYSICS B, 1988, 307 (04) :779-853
[10]   LOW-ENERGY EXPANSION OF MESON FORM-FACTORS [J].
GASSER, J ;
LEUTWYLER, H .
NUCLEAR PHYSICS B, 1985, 250 (03) :517-538