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Physical Review. D, Particles Fields; v. 6(10); p. 2875-2883
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[en] Diffractive parton-parton scattering in the soft pomeron regime can be explained by the production of a QCD sphaleron. Sphaleron production results into the emission of 3 + 2NF gluons and quarks. At RHIC we expect many sphalerons to be released thereby affecting most prompt processes
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16. international conference on ultra-relativistic nucleus-nucleus collisions; Nantes (France); 18-24 Jul 2002; S0375947402015348; Copyright (c) 2003 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: Hungary
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Perl, M.L.
Stanford Linear Accelerator Center, Menlo Park, CA (United States). Funding organisation: USDOE, Washington, DC (United States)1994
Stanford Linear Accelerator Center, Menlo Park, CA (United States). Funding organisation: USDOE, Washington, DC (United States)1994
AbstractAbstract
[en] The status of the Landau, Pomeranchuk, Migdal Effect is briefly reviewed. A recent experiment at the Stanford Linear Accelerator Center substantially agrees with the existing theoretical formulation. However, that formulation suffers from an imprecise foundation and a lack of generality. The difficulty of finding a simple, explanatory picture of the 1/√K behavior of the Effect is also noted
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May 1994; 15 p; 1994 Physics encounters of the Aosta Valley; La Thuile (Italy); 6-12 Mar 1994; CONF-9403127--1; CONTRACT AC03-76SF00515; Also available from OSTI as DE94013798; NTIS; US Govt. Printing Office Dep
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[en] Rigorous relations connecting the behaviour of real and imaginary parts of antisymmetric (symmetric) amplitude at arbitrary energies are obtained. Diverse versions of Pomaranchuk theorem and their generalization at finite energies follow from these relations. 24 refs. (author)
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[en] The asymptotic behaviour is investigated of the total cross section difference Δσ(E) = σsub(t) - average σsub(t) as well as of the real part of the forward scattering amplitude Re F(E). It is estimated that the scattering amplitude has analyticity in energy, crossing symmetry, polynomial boundedness and the Froissart-Martin bound. (Z.J.)
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Dubnicka, S. (ed.); Physics and applications; v. 4; 354 p; 1979; p. 315-330; VEDA, Publishing House of the Slovak Academy of Sciences; Bratislava, Czechoslovakia; Hadron Structure '77 conference; Strbske Pleso, Czechoslovakia; 11 - 14 Oct 1977
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Book
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[en] Some variants of the Pomeranchuk theorem are considered from the unique standpoint. Integral correlations are obtained, from which it follows that at finite energies the boundaries are junstified analogous to different variants of the Pomeranchuk theorem. It is noted that though the boundaries are justified at arbitrary energies, they depend on suppositions about asymptotic behaviour of antisymmetric amplitude. Asymptotic inequalities obtained are the consequence of requirements of the crossing-symmetry
Original Title
Teorema Pomeranchuka pri asimptoticheskikh i konechnykh ehnergiyakh
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For English translation see the journal Theor. Math. Phys.
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Teoreticheskaya i Matematicheskaya Fizika; v. 34(2); p. 153-157
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AbstractAbstract
No abstract available
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Physical Review. D, Particles Fields; v. 9(10); p. 2874-2893
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AbstractAbstract
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Phys. Lett., B; v. 45(5); p. 475-477
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[en] A number of intensified versions relating to both the Pomeranchuk theorem and the Pomeranchuk-Okun hypothesis has been proved
[ru]
Original Title
Sovremennyj status teoremy Pomeranchuka i gipotezy Pomeranchuka-Okunya. 2
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For English translation see the journal Soviet Physics Journal (USA).
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Journal Article
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Izvestiya Vysshikh Uchebnykh Zavedenij, Fizika; ISSN 0021-3411; ; v. 24(6); p. 36-38
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AbstractAbstract
No abstract available
Original Title
Review, Pomeranchuk theorem, total cross sections
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Sudarshan, E.C.G. (ed.); p. 255-293; 1973; Gordon and Breach, Science Publishers, Inc; New York; Symposium on the past decade in particle theory; Austin, Texas, USA; 14 Apr 1970
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Book
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