L. S. Vertogradov
Joint Institute for Nuclear Research
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Featured researches published by L. S. Vertogradov.
Nuclear Physics | 1967
V.A. Karnaukhov; G.M. Ter-Akopyan; L. S. Vertogradov; L.A. Petrov
Abstract The delayed proton emitters obtained by irradiating 92 Mo with 20 Ne and 22 Ne ions and 94 Mo with 20 Ne ions have been studied. Proton activities with half-lives 4.2±0.2 sec, 19±0.7 sec, 13±2 sec and 60–80 sec have been observed. The first two emitters are most likely to be Te isotopes with mass numbers 109 and 111, respectively. On the basis of the data obtained, the cross sections for the reactions 98 Mo( 20 Ne, 4−6n) 108−106 Te have been estimated.
Physical Review D | 2011
V. M. Abazov; G. D. Alexeev; G. Golovanov; Yu. N. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; H. Severini; P. Skubic; Michael A. Strauss; P. Svoisky; Bannanje Sripath Acharya; S. Banerjee; Naba Kumar Mondal; M. Adams; V. E. Bazterra
The ratio of the cross section for pp interactions producing a Z boson and at least one b-quark jet to the inclusive Z+jet cross section is measured using 4.2 fb{sup -1} of pp collisions collected with the D0 detector at the Fermilab Tevatron collider at {radical}(s)=1.96 TeV. The Z{yields}l{sup +}l{sup -} candidate events with at least one b jet are discriminated from Z+charm and light jet(s) events by a novel technique that exploits the properties of the tracks associated to the jet. The measured ratio is 0.0193{+-}0.0027 for events having a jet with transverse momentum p{sub T}>20 GeV and pseudorapidity |{eta}|{<=}2.5, which is the most precise to date and is consistent with theoretical predictions.The ratio of the cross section for
Physical Review D | 2010
V. M. Abazov; G. D. Alexeev; G. Golovanov; Yu. N. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; H. Severini; P. Skubic; Michael A. Strauss; P. Svoisky; M. Abolins; R. Brock; D. Edmunds; William Fisher; J. Kraus
p\bar{p}
Physical Review D | 2010
V. M. Abazov; G. D. Alexeev; G. Golovanov; Yu. N. Kharzheev; V. L. Malyshev; N. B. Skachkov; V. V. Tokmenin; A. Y. Verkheev; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; A. Alton; J. A. Benitez
interactions producing a
Physical Review D | 2010
V. M. Abazov; G. D. Alexeev; Yu. N. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; D. Edmunds; I. Hall
Z
Physical Review Letters | 2009
V. M. Abazov; G. D. Alexeev; Y. N. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; J. Dyer; D. Edmunds
boson and at least one
Physical Review Letters | 2009
V. M. Abazov; G. D. Alexeev; Y. M. Kharzheev; E. V. Komissarov; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; J. Dyer
b
Physical Review Letters | 2008
V. M. Abazov; G. D. Alexeev; A. M. Kalinin; Y. M. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; J. Dyer
quark jet to the inclusive
Physical Review Letters | 2008
V. M. Abazov; G. D. Alexeev; Y. M. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; J. Dyer; D. Edmunds
Z+{\rm jet}
Physical Review Letters | 2008
V. M. Abazov; G. D. Alexeev; A. M. Kalinin; Y. M. Kharzheev; V. L. Malyshev; V. V. Tokmenin; L. S. Vertogradov; Y. A. Yatsunenko; B. Abbott; P. Gutierrez; S. Hossain; Supriya Jain; M. Rominsky; H. Severini; P. Skubic; Michael A. Strauss; M. Abolins; J. A. Benitez; R. Brock; J. Dyer
cross section is measured using