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L.N.Lipatov, Sov. Jour. Nucl. Phys. 28 (1978) 822.
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29. G. Altarelli, R. Ball and S. Forte, Nucl. Phys. B742 (2006) 1.
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1893,1995; Phys.Rev.D65:112003,2002; Phys.Rev.D70:074008,2004;
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38. J. Kubar-Andre’ and F. Paige, Phys. Rev. D19(1979) 221. mberg, W. L. van Neerven and T.
Matsuura, Nucl. Phys. B359 (1991) 343; W. L. van Neerven and E. B. Zijlstra, Nucl. Phys.
B382(1992) 11.
39. V.V. Sudakov, Sov. Phys. JETP, 3 (1956) 75; Yu. Dokshitzer, D. Dyakonov and S. Troyan, Phys.
Lett. 76B (1978) 290, Phys. Rep. 58 (1980 269; G. Parisi and R. Petronzio, Nucl. Phys. B154
((1979) 427; G. Curci, M. Greco and Y. Srivastava, Phys. Rev. Lett. 43 (1979), Nucl. Phys.
B159 (1979) 451; J. Collins and D. Soper, Nucl. Phys. B139 (1981) 381, B194 (1982) 445,
B197 (1982)446; J. Kodaira and L. Trentadue, Phys. Lett. 112B (1982) 66, 123B (1983)335; J.
Collins, D. Soper and G. Sterman, Nucl. Phys. B250 (1985) 199; C. Davies, B. Webber and J.
Stirling, Nucl. Phys. B256 (1985) 413.
40. P. Arnold and R. Kauffman, Nucl.Phys.B349:381,1991; G.A. Ladinsky and C.P. Yuan,
Phys.Rev.D50:4239,1994; R.K. Ellis, S. Veseli, Nucl.Phys.B511:649,1998.
133
and R. Petronzio, Phys. Lett. 97B (1980) 438; E.G. Floratos, R. Lacaze and C. Kounnas, Phys.
Lett. 99B (1981) 89, 285; R. T. Herrod and S. Wada, Z. Phys. C9 (1981) 351.
21. S. Moch, J. A. M. Vermaseren and A. Vogt, Nucl. Phys. B 688, 101 (2004), [arXiv:hepph/0403192]; A. Vogt, S. Moch and J. A. M. Vermaseren, Nucl. Phys. B 691, 129 (2004),
[arXiv:hep-ph/0404111].
22. 5) G. Altarelli, R.Keith Ellis, G. Martinelli, Nucl.Phys.B143:521,1978, E.ibid.B146:544,1978;
Nucl.Phys.B157:461,1979.
23. A. D. Martin, R. G. Roberts, W. J. Stirling and R. S. Thorne, hep-ph/0110215, hep-ph/0201127.
24. G. Sterman, Nucl. Phys. B281 (1987) 310; S. Catani and L. Trentadue, Nucl. Phys. B327
(1989) 323; N. Kidonakis and G. Sterman, Nucl. Phys. B505 (1997) 321.
25. S. Forte and G. Ridolfi, Nucl.Phys. B650:229,2003; S. Moch, J. A. M. Vermaseren and
A. Vogt, Nucl. Phys. B 726 (2005) 317 [arXiv:hep-ph/0506288]; T. Becher, M. Neubert and
B. D. Pecjak, JHEP 0701 (2007) 076 [arXiv:hep-ph/0607228].
26. E. Gardi, G. P. Korchemsky, D. A. Ross and S. Tafat, Nucl. Phys. B 636 (2002) 385 [arXiv:hepph/0203161]; E. Gardi and R. G. Roberts, Nucl. Phys. B 653 (2003) 227 [arXiv:hepph/0210429].
27. L.N. Lipatov, Sov. Jour. Nucl. Phys. 23 (1976) 338; V.S. Fadin, E.A. Kuraev and L.N. Lipatov,
Phys. Lett. 60B (1975) 50; Sov. Phys. JETP 44 (1976) 443; 45(1977)199; Y.Y. Balitski and
L.N.Lipatov, Sov. Jour. Nucl. Phys. 28 (1978) 822.
28. V.S. Fadin and L.N. Lipatov, Phys. Lett. B429 (1998) 127; B429 (1998) 127; V.S. Fadin et al,
Phys. Lett. B359 (1995)181; B387 (1996)593; Nucl. Phys. B406 (1993) 259; Phys. Rev. D50
(1994) 5893; Phys. Lett. B389 (1996) 737; Nucl. Phys. B477 (1996) 767; Phys. Lett. B415
(1997) 97; B422 (1998) 287; G. Camici and M. Ciafaloni, Phys. Lett. B412 (1997) 396; Phys.
Lett. B430 (1998) 349. V. del Duca, Phys. Rev. D54 (1996) 989; D54 (1996) 4474; V. del Duca
and C.R. Schmidt, Phys. Rev. D57 (1998) 4069; Z. Bern, V. del Duca and C.R. Schmidt, Phys.
Lett. B445 (1998) 168.
29. G. Altarelli, R. Ball and S. Forte, Nucl. Phys. B742 (2006) 1.
30. M. Ciafaloni, D. Colferai, G. P. Salam and A. M. Stasto, Phys. Lett. B587 (2004) 87; see also
G. P. Salam, hep-ph/0501097; C. D. White and R. S. Thorne, Phys. Rev. D 75 (2007) 034005
[hep-ph/0611204].
31. S. Forte and Y. Goto, Proceedings of DIS 2006, Tsukuba, Japan, World Scientific, (2007), p.908
[hep-ph/0609127].
32. M. Hirai, S. Kumano and N. Saito, Phys.Rev. D69 (2004) 05402.
33. G. Mallot, hep-ex/0612055.
34. G.Altarelli and G. G. Ross, Phys. Lett. B212 (1988) 391; A. V. Efremov and O. V. Terayev,
Proceedings of the Czech Hadron Symposium, 1988, p. 302; R. D. Carlitz, J. C. Collins and A.
H. Mueller, Phys. Lett. B214 (1988) 229; G. Altarelli and B. Lampe, Z. Phys. C47 (1990) 315.
35. CDF Run II Collaboration, Phys.Rev.D74:071103,2006; e-Print: hep-ex/0512020 the D0
Collaboration, Phys.Rev.Lett.86:2523,2001; Phys.Lett.B639:151,2006.
36. The CDF Collaboration, Phys.Rev.Lett.73:2662–2666,1994, Erratum-ibid.74:1891–
1893,1995; Phys.Rev.D65:112003,2002; Phys.Rev.D70:074008,2004;
37. R. Ha the D0 Collaboration, Phys.Rev.Lett.87:251805,2001; Phys.Rev.Lett.84:2786,2000.
38. J. Kubar-Andre’ and F. Paige, Phys. Rev. D19(1979) 221. mberg, W. L. van Neerven and T.
Matsuura, Nucl. Phys. B359 (1991) 343; W. L. van Neerven and E. B. Zijlstra, Nucl. Phys.
B382(1992) 11.
39. V.V. Sudakov, Sov. Phys. JETP, 3 (1956) 75; Yu. Dokshitzer, D. Dyakonov and S. Troyan, Phys.
Lett. 76B (1978) 290, Phys. Rep. 58 (1980 269; G. Parisi and R. Petronzio, Nucl. Phys. B154
((1979) 427; G. Curci, M. Greco and Y. Srivastava, Phys. Rev. Lett. 43 (1979), Nucl. Phys.
B159 (1979) 451; J. Collins and D. Soper, Nucl. Phys. B139 (1981) 381, B194 (1982) 445,
B197 (1982)446; J. Kodaira and L. Trentadue, Phys. Lett. 112B (1982) 66, 123B (1983)335; J.
Collins, D. Soper and G. Sterman, Nucl. Phys. B250 (1985) 199; C. Davies, B. Webber and J.
Stirling, Nucl. Phys. B256 (1985) 413.
40. P. Arnold and R. Kauffman, Nucl.Phys.B349:381,1991; G.A. Ladinsky and C.P. Yuan,
Phys.Rev.D50:4239,1994; R.K. Ellis, S. Veseli, Nucl.Phys.B511:649,1998.
