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Dive into the research topics where A. Chikanian is active.

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Featured researches published by A. Chikanian.


Physical Review C | 2004

K(892)* resonance production in Au+Au and p+p collisions at sqrt(sNN) = 200 GeV at RHIC

J. Adams; M. M. Aggarwal; Z. Ahammed; J. Amonett; B. D. Anderson; D. Arkhipkin; G. S. Averichev; S.K. Badyal; Y. Bai; J. Balewski; O. Barannikova; L. S. Barnby; J. Baudot; S. Bekele; V. V. Belaga; R. Bellwied; Joram Berger; B. I. Bezverkhny; S. Bharadwaj; A. Bhasin; A. K. Bhati; V.S. Bhatia; H. Bichsel; A. Billmeier; L. C. Bland; C. O. Blyth; B. E. Bonner; M. Botje; A. Boucham; A. V. Brandin

Author(s): Adams, J.; Aggarwal, M.M.; Ahammed, Z.; Amonett, J.; Anderson, B.D.; Arkhipkin, D.; Averichev, G.S.; Badyal, S.K.; Bai, Y.; Balewski, J.; Barannikova, O.; Barnby, L.S.; Baudot, J.; Bekele, S.; Belaga, V.V.; Bellwied, R.; Berger, J.; Bezverkhny, B.I.; Bharadwaj, S.; Bhasin, A.; Bhati, A.K.; Bhatia, V.S.; Bichsel, H.; Billmeier, A.; Bland, L.C.; Blyth, C.O.; Bonner, B.E.; Botje, M.; Boucham, A.; Brandin, A.V.; Bravar, A.; Bystersky, M.; Cadman, R.V.; Cai, X.Z.; Caines, H.; Calderon de la Barca Sanchez, M.; Castillo, J.; Cebra, D.; Chajecki, Z.; Chaloupka, P.; Chattopadhyay, S.; Chen, H.F.; Chen, Y.; Cheng, J.; Cherney, M.; Chikanian, A.; Christie, W.; Coffin, J.P.; Cormier, T.M.; Cramer, J.G.; Crawford, H.J.; Das, D.; Das, S.; de Moura, M.M.; Derevschikov, A.A.; Didenko, L.; Dietel, T.; Dogra, S.M.; Dong, W.J.; Dong, X.; Draper, J.E.; Du, F.; Dubey, A.K.; Dunin, V.B.; Dunlop, J.C.; Dutta Mazumdar, M.R.; Eckardt, V.; Edwards, W.R.; Efimov, L.G.; Emelianov, V.; Engelage, J.; Eppley, G.; Erazmus, B.; Estienne, M.; Fachini, P.; Faivre, J.; Fatemi, R.; Fedorisin, J.; Filimonov, K.; Filip, P.; Finch, E.; Fine, V.; Fisyak, Y.; Fomenko, K.; Fu, J.The short-lived K(892)* resonance provides an efficient tool to probe properties of the hot and dense medium produced in relativistic heavy-ion collisions. We report measurements of K* in root s(NN)=200 GeV Au+Au and p+p collisions reconstructed via its hadronic decay channels K(892)*(0)-> K pi and K(892)*(+/-)-> K(S)(0)pi(+/-) using the STAR detector at the Relativistic Heavy Ion Collider at Brookhaven National Laboratory. The K*(0) mass has been studied as a function of p(T) in minimum bias p+p and central Au+Au collisions. The K(*) p(T) spectra for minimum bias p+p interactions and for Au+Au collisions in different centralities are presented. The K*/K yield ratios for all centralities in Au+Au collisions are found to be significantly lower than the ratio in minimum bias p+p collisions, indicating the importance of hadronic interactions between chemical and kinetic freeze-outs. A significant nonzero K*(0) elliptic flow (v(2)) is observed in Au+Au collisions and is compared to the K(S)(0) and Lambda v(2). The nuclear modification factor of K* at intermediate p(T) is similar to that of K(S)(0) but different from Lambda. This establishes a baryon-meson effect over a mass effect in the particle production at intermediate p(T) (2 < p(T)<= 4 GeV/c).


Physical Review Letters | 1997

Search for charged strange quark matter produced in 11.5A GeV/c Au+Pb collisions

T. A. Armstrong; K. N. Barish; Michael Bennett; S. Bennett; A. Chikanian; S.D. Coe; Thomas Michael Cormier; R. Davies; G. de Cataldo; P. Dee; G. E. Diebold; Carl B. Dover; P. Fachini; L. E. Finch; N. K. George; N. Giglietto; S. Greene; P. Haridas; John C. Hill; A. Hirsch; R. A. Hoversten; H. Z. Huang; B. Kim; B. S. Kumar; T. Lainis; J. G. Lajoie; R. Lewis; Q. Li; B. Libby; R. Majka

We present results of a search for strange quark matter (strangelets) in 11.5 A GeV/c Au+Pb collisions from the 1994 and 1995 runs of experiment E864 at Brookhavens AGS. We observe no strangelet candidates and set a 90% confidence level upper limit of approximately 3x10**-8 per 10% central interaction for the production of |Z|=1 and |Z|=2 strangelets over a large mass range and with metastable lifetimes of about 50 ns or more. These results place constraints primarily on quark-gluon plasma based production models for strangelets.


Physical Review C | 2000

Measurements of light nuclei production in 11.5a GeV/c Au+Pb heavy-ion collisions

T. A. Armstrong; K. N. Barish; S. Batsouli; S. Bennett; M. Bertaina; A. Chikanian; S. D. Coe; T. M. Cormier; R. Davies; Carl B. Dover; P. Fachini; B. Fadem; L. E. Finch; N. K. George; S. Greene; P. Haridas; J. C. Hill; A. Hirsch; R. Hoversten; H. Z. Huang; H. Jaradat; B. S. Kumar; T. Lainis; J. G. Lajoie; R. Lewis; Q. Li; B. Libby; R. Majka; T. E. Miller; M. G. Munhoz

We report on measurements by the E864 experiment at the BNL-AGS of the yields of light nuclei in collisions of Au(197) with beam momentum of 11.5 A GeV/c on targets of Pb(208) and Pt(197). The yields are reported for nuclei with baryon number A=1 up to A=7, and typically cover a rapidity range from y(cm) to y(cm)+1 and a transverse momentum range of approximately 0.1<p(T)/A<0.5 GeV/c. We calculate coalescence scale factors B(A) from which we extract model dependent source dimensions and collective flow velocities. We also examine the dependences of the yields on baryon number, spin, and isospin of the produced nuclei.


Physical Review Letters | 2009

Search for Stable Strange Quark Matter in Lunar Soil

K. Han; J. Ashenfelter; A. Chikanian; W. Emmet; L. E. Finch; A. Heinz; Jes Madsen; R. Majka; B. Monreal; J. Sandweiss

We report results from a search for strangelets (small chunks of strange quark matter) in lunar soil using the Yale WNSL accelerator as a mass spectrometer. We have searched over a range in mass from A = 42 to A = 70 amu for nuclear charges 5, 6, 8, 9, and 11. No strangelets were found in the experiment. For strangelets with nuclear charge 8, a concentration in lunar soil higher than 10(-16) is excluded at the 95% confidence level. The implied limit on the strangelet flux in cosmic rays is the most sensitive to date for the covered range and is relevant to both recent theoretical flux predictions and a strangelet candidate event found by the AMS-01 experiment.


Physical Review Letters | 2000

Antideuteron yield at the AGS and coalescence implications

T. A. Armstrong; K. N. Barish; S. Batsouli; S. Bennett; M. Bertaina; A. Chikanian; S. D. Coe; T. M. Cormier; R. Davies; Carl B. Dover; P. Fachini; B. Fadem; L. E. Finch; N. K. George; S. V. Greene; P. Haridas; John C. Hill; A. Hirsch; R. Hoversten; H. Z. Huang; H. Jaradat; B. S. Kumar; T. Lainis; J. G. Lajoie; Q. Li; B. Libby; R. Majka; T. E. Miller; M. G. Munhoz; J. L. Nagle

We present Experiment 864s measurement of invariant antideuteron yields in 11.5A GeV/c Au + Pt collisions. The analysis includes 250 million triggers representing 14 billion 10% central interactions sampled for events with high mass candidates. We find (1/2 pi pt) d^(2)N/dydpt = 3.5 +/- 1.5 (stat.) +0.9,-0.5 (sys.) x 10^(-8) GeV^(-2)c^(2) for 1.8=0.35 GeV/c (y(cm)=1.6) and 3.7 +/- 2.7 (stat.) +1.4,-1.5 (sys.) x 10^(-8) GeV^(-2)c^(2) for 1.4=0.26 GeV/c, and a coalescence parameter B2-bar of 4.1 +/- 2.9 (stat.) +2.3,-2.4 (sys.) x 10^(-3) GeV^(2)c^(-3). Implications for the coalescence model and antimatter annihilation are discussed.


Physical Review Letters | 1999

Mass dependence of light-nucleus production in ultrarelativistic heavy-ion collisions

T. A. Armstrong; K. N. Barish; S. Batsouli; S. Bennett; A. Chikanian; S. D. Coe; Thomas Michael Cormier; R. Davies; Carl B. Dover; P. Fachini; B. Fadem; L. E. Finch; N. K. George; S. V. Greene; P. Haridas; John C. Hill; A. Hirsch; R. Hoversten; H. Z. Huang; H. Jaradat; B. S. Kumar; T. Lainis; J. G. Lajoie; R. Lewis; Q. Li; B. Libby; R. Majka; T. E. Miller; M. G. Munhoz; J. L. Nagle

Light nuclei can be produced in the central reaction zone via coalescence in relativistic heavy ion collisions. E864 at BNL has measured the production of ten light nuclei with nuclear number of A=1 to A=7 at rapidity


Physical Review C | 2001

Search for strange quark matter produced in relativistic heavy ion collisions

T. A. Armstrong; K. N. Barish; S. Batsouli; S. Bennett; M. Bertaina; A. Chikanian; S. D. Coe; T. M. Cormier; R. Davies; G. DeCataldo; P. Dee; G. E. Diebold; Carl B. Dover; P. Fachini; B. Fadem; L. E. Finch; N. K. George; N. Giglietto; S. V. Greene; P. Haridas; J. C. Hill; A. Hirsch; R. Hoversten; H. Z. Huang; H. Jaradat; B. Kim; B. S. Kumar; T. Lainis; J. G. Lajoie; R. Lewis

y\simeq1.9


Physical Review C | 1999

Antiproton production and antideuteron production limits in relativistic heavy ion collisions

T. A. Armstrong; K. N. Barish; S. Batsoulli; S. Bennett; A. Chikanian; S. D. Coe; T. M. Cormier; R. Davies; Carl B. Dover; P. Fachini; B. Fadem; L. E. Finch; N. K. George; S. Greene; P. Haridas; J. C. Hill; A. Hirsch; R. Hoversten; H. Z. Huang; B. S. Kumar; T. Lainis; J. G. Lajoie; Q. Li; B. Libby; R. Majka; T. E. Miller; M. G. Munhoz; J. L. Nagle; I. A. Pless; J. K. Pope

and


Physical Review Letters | 1997

Antiproton Production in 11.5A GeV/c Au+Pb Nucleus-Nucleus Collisions

T. A. Armstrong; K. N. Barish; M. J. Bennett; S. Bennett; A. Chikanian; S.D. Coe; T. M. Cormier; R. Davies; G. de Cataldo; P. Dee; G. E. Diebold; Carl B. Dover; P. Fachini; L. E. Finch; N. K. George; N. Giglietto; S. Greene; P. Haridas; J. C. Hill; A. Hirsch; H. Z. Huang; B. Kim; B. S. Kumar; J. G. Lajoie; R. Lewis; Q. Li; Y. Li; B. Libby; R. Majka; M. G. Munhoz

p_{T}/A\leq300MeV/c


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1995

Position and timing resolution of interpolating cathode strip chambers in a test beam

G. Bencze; A. Chikanian; M. Della Negra; V. Gratchev; A. Hervé; O. Kiselev; S. McCorkle; M. Mohammadi; P. O'Connor; V. Polychronakos; O. Prokofiev; V. Radeka; E. Radermacher; C. Seez; J. T. Shank; G.C. Smith; J. Sondericker; D. Stephani; F. Szoncso; V. Tcherniatine; A. Vanyashin; G. Walzel; S. Whitaker; G. Wrochna; C.-E. Wulz; B. Yu

. Data were taken with a Au beam of momentum of 11.5 A

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H. Bichsel

University of Washington

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J. Balewski

Indiana University Bloomington

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D. Arkhipkin

Brookhaven National Laboratory

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L. C. Bland

Indiana University Bloomington

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Z. Ahammed

Variable Energy Cyclotron Centre

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G. S. Averichev

Joint Institute for Nuclear Research

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A. V. Brandin

Joint Institute for Nuclear Research

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S. Bennett

Wayne State University

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