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B E Bonner

Explore the profile of B E Bonner including associated specialties, affiliations and a list of published articles. Areas
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Articles 66
Citations 45
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Recent Articles
1.
Adler C, Ahammed Z, Allgower C, Amonett J, Anderson B, Anderson M, et al.
Phys Rev Lett . 2021 Sep; 127(8):089901. PMID: 34477449
This corrects the article DOI: 10.1103/PhysRevLett.89.132301.
2.
Adams J, Adler C, Aggarwal M, Ahammed Z, Amonett J, Anderson B, et al.
Phys Rev Lett . 2021 Aug; 127(6):069901. PMID: 34420354
This corrects the article DOI: 10.1103/PhysRevLett.92.062301.
3.
Aggarwal M, Ahammed Z, Alakhverdyants A, Alekseev I, Alford J, Anderson B, et al.
Phys Rev Lett . 2011 Jan; 105(20):202301. PMID: 21231222
The contribution of B meson decays to nonphotonic electrons, which are mainly produced by the semileptonic decays of heavy-flavor mesons, in p + p collisions at √s=200  GeV has been...
4.
Aggarwal M, Ahammed Z, Alakhverdyants A, Alekseev I, Alford J, Anderson B, et al.
Phys Rev Lett . 2010 Sep; 105(2):022302. PMID: 20867702
We report the first measurements of the kurtosis (κ), skewness (S), and variance (σ2) of net-proton multiplicity (Np-Np) distributions at midrapidity for Au+Au collisions at square root of s(NN)=19.6, 62.4,...
5.
Abelev B, Aggarwal M, Ahammed Z, Alakhverdyants A, Anderson B, Arkhipkin D, et al.
Phys Rev Lett . 2010 Sep; 105(2):022301. PMID: 20867701
We report the first three-particle coincidence measurement in pseudorapidity (Δη) between a high transverse momentum (p⊥) trigger particle and two lower p⊥ associated particles within azimuth |Δϕ|<0.7 in square root...
6.
Abelev B, Aggarwal M, Ahammed Z, Alakhverdyants A, Anderson B, Arkhipkin D, et al.
Phys Rev Lett . 2010 Apr; 103(25):251601. PMID: 20366248
Parity-odd domains, corresponding to nontrivial topological solutions of the QCD vacuum, might be created during relativistic heavy-ion collisions. These domains are predicted to lead to charge separation of quarks along...
7.
Abelev B, Aggarwal M, Ahammed Z, Alakhverdyants A, Alekseev I, Anderson B, et al.
Science . 2010 Mar; 328(5974):58-62. PMID: 20203011
Nuclear collisions recreate conditions in the universe microseconds after the Big Bang. Only a very small fraction of the emitted fragments are light nuclei, but these states are of fundamental...
8.
Abelev B, Aggarwal M, Ahammed Z, Anderson B, Arkhipkin D, Averichev G, et al.
Phys Rev Lett . 2009 Nov; 103(17):172301. PMID: 19905749
Forward-backward multiplicity correlation strengths have been measured with the STAR detector for Au + Au and p + p collisions at square root of s(NN) = 200 GeV. Strong short-...
9.
Abelev B, Aggarwal M, Ahammed Z, Anderson B, Arkhipkin D, Averichev G, et al.
Phys Rev Lett . 2009 Oct; 103(9):092301. PMID: 19792791
We report K/pi fluctuations from Au + Au collisions at sqrt[s(NN)]= 19.6, 62.4, 130, and 200 GeV using the STAR detector at the Relativistic Heavy Ion Collider. K/pi fluctuations in...
10.
Lachniet J, Afanasev A, Arenhovel H, Brooks W, Gilfoyle G, Higinbotham D, et al.
Phys Rev Lett . 2009 Jun; 102(19):192001. PMID: 19518944
The neutron elastic magnetic form factor was extracted from quasielastic electron scattering on deuterium over the range Q;{2}=1.0-4.8 GeV2 with the CLAS detector at Jefferson Lab. High precision was achieved...