Sum rules and moments of the nucleon spin structure functions

被引:35
|
作者
Chen, JP
Deur, A
Meziani, ZE
机构
[1] Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA
[2] Temple Univ, Dept Phys, Philadelphia, PA 19122 USA
关键词
nucleon; spin; sum rule; moment; QCD; higher twist; Jefferson Lab;
D O I
10.1142/S021773230501875X
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The nucleon has been used as a laboratory to investigate its own spin structure and quantum chromodynamics. New experimental data on nucleon spin structure at low to intermediate momentum transfers combined with existing high momentum transfer data offer a comprehensive picture of the transition region from the confinement regime of the theory to its asymptotic freedom regime. Insight for some aspects of the theory is gained by exploring lower moments of spin structure functions and their corresponding sum rules (i.e. the Gerasimov-Drell-Hearn, Bjorken and Burkhardt-Cottingham). These moments are expressed in terms of an operator-product expansion using quark and gluon degrees of freedom at moderately large momentum transfers. The sum rules are verified to good accuracy assuming that no singular behavior of the structure functions is present at very high excitation energies. The higher-twist contributions have been examined through the moments evolution as the momentum transfer varies from higher to lower values. Furthermore, QCD-inspired low-energy effective theories, which explicitly include chiral symmetry breaking, are tested at low momentum transfers. The validity of these theories is further examined as the momentum transfer increases to moderate values. It is found that chiral perturbation calculations agree reasonably well with the first moment of the spin structure function g(1) at momentum transfer of 0.1 GeV2 but fail to reproduce the neutron data in the case of the generalized polarizability delta(LT).
引用
收藏
页码:2745 / 2765
页数:21
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