BOUND-STATES AND ASYMPTOTIC LIMITS FOR QUANTUM CHROMODYNAMICS IN 2 DIMENSIONS

被引:34
作者
BROWER, RC [1 ]
SPENCE, WL [1 ]
WEIS, JH [1 ]
机构
[1] UNIV WASHINGTON, DEPT PHYS, SEATTLE, WA 98195 USA
关键词
D O I
10.1103/PhysRevD.19.3024
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
For quantum chromodynamics in two dimensions in the limit of an increasing number of colors (NC) with g2NCm2 fixed, the meson bound-state problem requires the solution to 't Hooft's integral equation. For low masses, we express the 't Hooft equation as an explicit matrix problem, which enables us to calculate accurate masses mn2, (n=0,1,50) and wave functions nab(x) for the quark (a)-antiquark (b) bound states. In the large-mass (or WKB) limit, the 't Hooft equation is solved analytically. We obtain the spectrum mn2=2m2(n+34)+(ma2+mb2) lnn+C(ma2)+C(mb2)+O(1n), where C(ma2) is explicitly calculated. The corresponding WKB wave function, abn(x)2 sin[(n+1)x+nab(x)], has a phase shift nab(x), which is crucial for obtaining the following new asymptotic results for meson bound-state amplitudes: (1) The normalization of the scaling term for e+e-X and e-he-X is demonstrated to agree exactly with the parton model.(2) The inclusive cross section for e+e-hX is given by the sum over quark fragmentation (ah+b) functions Dha(xF)=|nab(1xF)|2, where the complex amplitude nab(x) is the analytic continuation of the wave function nab(x) to x>1. (3) Regge powers are shown to have the correct phase sab(0)e-iab(0). These calculations explicitly verify that hard (parton) and soft (dual-Regge) physics can indeed be combined and illustrate the new physics resulting from this unification. © 1979 The American Physical Society.
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页码:3024 / 3049
页数:26
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