Need Assistance with "QCD and Resonance Physics"

wing of jupiter
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who can help me?

I want this paper "QCD and resonance physics. theoretical foundations" by M. A. Shifman, A. I. Vainshteinstar, filled and V. I. Zakharov

who can email it to me?or tell me a website to read full text?

Thanks!
 
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http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6TVC-471XM35-JS&_coverDate=02%2F05%2F1979&_alid=329734494&_rdoc=1&_fmt=&_orig=search&_qd=1&_cdi=5531&_sort=d&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=1391c0888f3ebec77b2f933660596f5a
Yay I found it!
 
Is it good?
 
Toponium is a hadron which is the bound state of a valance top quark and a valance antitop quark. Oversimplified presentations often state that top quarks don't form hadrons, because they decay to bottom quarks extremely rapidly after they are created, leaving no time to form a hadron. And, the vast majority of the time, this is true. But, the lifetime of a top quark is only an average lifetime. Sometimes it decays faster and sometimes it decays slower. In the highly improbable case that...
I'm following this paper by Kitaev on SL(2,R) representations and I'm having a problem in the normalization of the continuous eigenfunctions (eqs. (67)-(70)), which satisfy \langle f_s | f_{s'} \rangle = \int_{0}^{1} \frac{2}{(1-u)^2} f_s(u)^* f_{s'}(u) \, du. \tag{67} The singular contribution of the integral arises at the endpoint u=1 of the integral, and in the limit u \to 1, the function f_s(u) takes on the form f_s(u) \approx a_s (1-u)^{1/2 + i s} + a_s^* (1-u)^{1/2 - i s}. \tag{70}...
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