A next-to-leading order QCD analysis of the spin structure function g(1)

A next-to-leading order QCD analysis of the spin structure function g(1)
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自旋结构函数 g(1) 的次领先阶 QCD 分析

DOI:
10.1103/physrevd.58.112002
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发表时间:
1998
期刊:
影响因子:
5
通讯作者:
J. Zhao
J. Zhao
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
B. Adeva;T. Akdogan;E. Arik;B. Badelek;G. Bardin;G. Baum;P. Berglund;L. Betev;R. Birsa;N. D. Botton;F. Bradamante;A. Bravar;A. Bressan;S. Bültmann;É. Burtin;C. Cavata;D. Crabb;Justin Cranshaw;T. Çuhadai;S. Torre;R. Dantzig;B. Derro;A. Deshpande;S. Dhawan;C. Dulya;S. Eichblatt;D. Fasching;F. Feinstein;C. Fernández;S. Forthmann;B. Frois;A. Gallas;J. A. Garzón;H. Gilly;M. Giorgi;E. Goeler;S. Goertz;G. Gracia;N. Groot;M. Perdekamp;K. Haft;D. von;Harrach;T. Hasegawa;P. Hautle;N. Hayashi;C. Heusch;N. Horikawa;V. Hughes;G. Igo;S. Ishimoto;T. Iwata;E. Kabuß;T. Kageya;A. Karev;H. Kessler;T. Ketel;J. Kiryluk;Y. Kisselev;D. Krämer;V. Krivokhijine;W. Kröger;V. Kukhtin;K. Kurek;J. Kyynäräinen;M. Lamanna;U. Landgraf;J. Goff;F. Lehár;A. Lesquen;J. Lichtenstadt;M. Litmaath;A. Magnon;G. Mallot;F. Marie;A. Martin;J. Martino;T. Matsuda;B. Mayes;J. Mccarthy;K. Medved;W. Meyer;G. Middelkoop;D. Miller;Y. Miyachi;K. Mori;J. Moromisato;J. Nassalski;L. Naumann;T. Niinikoski;J. Oberski;A. Ogawa;C. Ozben;H. Pereira;F. Perrot;D. Peshekhonov;R. Piegaia;L. Pinsky;S. Platchkov;M. Pló;D. Pose;H. Postma;J. Pretz;R. Puntaferro;T. Pussieux;G. Rädel;A. Rijllart;G. Reicherz;J. Roberts;M. Rodriguez;E. Rondio;I. Sabo;J. Saborido;A. Sandacz;I. Savin;P. Schiavon;A. Schiller;E. Sichtermann;F. Simeoni;G. Smirnov;A. Staude;A. Steinmetz;U. Stiegler;H. Stuhrmann;M. Szleper;F. Tessarotto;D. Thers;W. Tlaczala;A. Tripet;G. Unel;M. Velasco;J. Vogt;R. Voss;C. Whitten;R. Windmolders;R. Willumeit;W. Wiślicki;A. Witzmann;J. Ylöstalo;A. Zanetti;K. Zaremba;J. Zhao

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我们对自旋结构函数g(1)的现有数据进行了次领先阶QCD分析,包括来自自旋μ子合作组织的最终数据。我们目前的质子,氘核和中子的结构函数的第一时刻的结果,并确定单重态和非单重态部分子分布在两个因式分解计划。我们还测试了Bjorken求和规则,并发现与理论预测在10%的水平。[S0556-2821(98)07117-3]。
We present a next-to-leading order QCD analysis of the presently available data on the spin structure function g(1) including the final data from the Spin Muon Collaboration. We present results for the first moments of the proton, deuteron, and neutron structure functions, and determine singlet and nonsinglet parton distributions in two factorization schemes. We also test the Bjorken sum rule and find agreement with the theoretical prediction at the level of 10%. [S0556-2821(98)07117-3].