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Vernov, Yurii Sergeevich

Statistics Math-Net.Ru
Total publications: 26
Scientific articles: 26
Presentations: 1

Number of views:
This page:314
Abstract pages:7328
Full texts:3032
References:1147
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https://www.mathnet.ru/eng/person18670
List of publications on Google Scholar
List of publications on ZentralBlatt
https://mathscinet.ams.org/mathscinet/MRAuthorID/196298

Publications in Math-Net.Ru Citations
2005
1. Yu. S. Vernov, M. N. Mnatsakanova, “Wightman axiomatic approach in noncommutative field theory”, TMF, 142:2 (2005),  403–416  mathnet  mathscinet  zmath  elib; Theoret. and Math. Phys., 142:2 (2005), 337–348  isi 6
2. Yu. S. Vernov, M. N. Mnatsakanova, “Jost–Lehmann–Dyson representation, analyticity in the angular variable, and upper bounds in noncommutative quantum field theory”, TMF, 142:2 (2005),  388–402  mathnet  mathscinet  zmath  elib; Theoret. and Math. Phys., 142:2 (2005), 324–336  isi 1
2004
3. Yu. S. Vernov, M. N. Mnatsakanova, “Dispersion Relations for the Forward Elastic Scattering Amplitude in Noncommutative Quantum Field Theory”, TMF, 139:1 (2004),  3–11  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 139:1 (2004), 451–457  isi 2
2003
4. Yu. S. Vernov, M. N. Mnatsakanova, “Commutation Relations in an Indefinite-Metric Space”, TMF, 135:3 (2003),  420–426  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 135:3 (2003), 802–807  isi
2002
5. Yu. S. Vernov, M. N. Mnatsakanova, “High-Energy Relations Between Elastic Scattering Amplitudes of Particles and Antiparticles”, TMF, 132:2 (2002),  198–210  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 132:2 (2002), 1059–1070  isi
2001
6. Yu. S. Vernov, M. N. Mnatsakanova, “Regular Representations of the Generalized Heisenberg Algebra”, TMF, 129:2 (2001),  219–226  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 129:2 (2001), 1494–1500  isi 1
2000
7. Yu. S. Vernov, M. N. Mnatsakanova, “Regular representations of the $R$-deformed Heisenberg algebra”, TMF, 125:2 (2000),  272–281  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 125:2 (2000), 1531–1538  isi 2
1997
8. Yu. S. Vernov, M. N. Mnatsakanova, “Algebra of $q$-deformed commutators in an indefinite metric space”, TMF, 113:3 (1997),  355–368  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 113:3 (1997), 1497–1507  isi 3
1989
9. Yu. S. Vernov, M. S. Chubarov, “Practical analyticity of scattering amplitudes”, TMF, 79:3 (1989),  416–422  mathnet  mathscinet; Theoret. and Math. Phys., 79:3 (1989), 627–631  isi
1984
10. Yu. S. Vernov, A. V. Konovalov, M. N. Mnatsakanova, “Integral equalities for functions that satisfy dispersion relations”, TMF, 61:1 (1984),  85–91  mathnet  mathscinet; Theoret. and Math. Phys., 61:1 (1984), 1012–1016  isi
11. Yu. S. Vernov, M. N. Mnatsakanova, M. S. Chubarov, “Rigorous upper bounds on integrals of the scattering amplitude”, TMF, 59:2 (1984),  233–239  mathnet  mathscinet; Theoret. and Math. Phys., 59:2 (1984), 473–477  isi
1983
12. Yu. S. Vernov, Yu. D. Chernichenko, “Upper bound on diffraction peak width”, TMF, 56:3 (1983),  476–478  mathnet  mathscinet; Theoret. and Math. Phys., 56:3 (1983), 952–953  isi
1982
13. Yu. S. Vernov, M. N. Mnatsakanova, “Rigorous bounds on the elastic scattering amplitude at finite energies”, TMF, 52:2 (1982),  199–212  mathnet  mathscinet; Theoret. and Math. Phys., 52:2 (1982), 746–755  isi 3
1980
14. Yu. S. Vernov, A. F. Kurbatov, “Lower bound and zeros of the scattering amplitude”, TMF, 43:3 (1980),  323–329  mathnet  mathscinet; Theoret. and Math. Phys., 43:3 (1980), 490–494  isi 1
1978
15. Yu. S. Vernov, M. N. Mnatsakanova, “Pomeranchuk's theorem at asymptotic and finite energies”, TMF, 34:2 (1978),  153–157  mathnet; Theoret. and Math. Phys., 34:2 (1978), 95–98 1
1976
16. Yu. S. Vernov, O. V. Dumbrais, T. Yu. Dumbrais, M. N. Mnatsakanova, “New possibilities of verifying analyticity”, TMF, 26:1 (1976),  137–140  mathnet  mathscinet; Theoret. and Math. Phys., 26:1 (1976), 89–91
1975
17. Yu. S. Vernov, M. N. Mnatsakanova, “Lower bound for forward scattering amplitude”, TMF, 24:1 (1975),  141–144  mathnet  mathscinet; Theoret. and Math. Phys., 24:1 (1975), 728–730 1
1974
18. Yu. S. Vernov, “Analyticity and bounds on the scattering amplitude at finite energies”, TMF, 21:2 (1974),  195–206  mathnet; Theoret. and Math. Phys., 21:2 (1974), 1074–1082 2
19. Yu. S. Vernov, “Bounds on the elastic scattering amplitudes of weakly interacting particles”, TMF, 20:3 (1974),  315–319  mathnet  mathscinet; Theoret. and Math. Phys., 20:3 (1974), 846–848
1973
20. Yu. S. Vernov, “Lower bounds of the elastic forward scattering amplitude”, TMF, 17:2 (1973),  199–203  mathnet  mathscinet; Theoret. and Math. Phys., 17:2 (1973), 1089–1092 2
21. Yu. S. Vernov, “Analyticity and properties of the amplitudes of elastic $\nu e$ and $\overline{\nu} e$ scattering at high energies”, TMF, 16:3 (1973),  423–426  mathnet  mathscinet; Theoret. and Math. Phys., 16:3 (1973), 942–944 2
22. Yu. S. Vernov, M. N. Mnatsakanova, “Integral representation of the $\pi$-meson electromagnetic radius”, TMF, 16:1 (1973),  66–69  mathnet; Theoret. and Math. Phys., 16:1 (1973), 676–678
1972
23. V. Z. Baluni, Yu. S. Vernov, O. V. Dumbrais, M. N. Mnatsakanova, “Difference of the total cross sections and the ratio of the differential cross sections of high energy $\pi^\pm p$ forward scattering”, TMF, 13:3 (1972),  362–367  mathnet; Theoret. and Math. Phys., 13:3 (1972), 1196–1199 1
24. Yu. S. Vernov, M. N. Mnatsakanova, “Restriction of scattering amplitude growth at finite energies”, TMF, 10:1 (1972),  33–46  mathnet; Theoret. and Math. Phys., 10:1 (1972), 22–29 7
1970
25. V. Z. Baluni, Yu. S. Vernov, “Sum rules for the ratio of the $\pi^{\pm} p$-scattering amplitudes”, TMF, 5:2 (1970),  235–243  mathnet; Theoret. and Math. Phys., 5:2 (1970), 1114–1120 5
26. Yu. S. Vernov, “Relationship between the elastic forward scattering amplitudes for a particle and antiparticle at finite energies”, TMF, 4:1 (1970),  3–6  mathnet; Theoret. and Math. Phys., 4:1 (1970), 627–630 8

Presentations in Math-Net.Ru
1. Классические теоремы в некоммутативной квантовой теории поля
Yu. S. Vernov
Seminar of the Department of Mathematical Physics, Steklov Mathematical Institute of RAS
October 27, 2005

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