Partial-wave analysis of J/KS0K

Z. Bai, G. T. Blaylock, T. Bolton, J. C. Brient, T. Browder, J. S. Brown, K. O. Bunnell, M. Burchell, T. H. Burnett, R. E. Cassell, D. Coffman, V. Cook, D. H. Coward, F. DeJongh, D. E. Dorfan, J. Drinkard, G. P. Dubois, G. Eigen, K. F. Einsweiler, B. I. EisensteinT. Freese, C. Gatto, G. Gladding, C. Grab, J. Hauser, C. A. Heusch, D. G. Hitlin, J. M. Izen, P. C. Kim, J. Labs, A. Li, W. S. Lockman, U. Mallik, C. G. Matthews, A. I. Mincer, R. Mir, P. M. Mockett, B. Nemati, A. Odian, L. Parrish, R. Partridge, D. Pitman, S. A. Plaetzer, J. D. Richman, H. F W Sadrozinski, M. Scarlatella, T. L. Schalk, R. H. Schindler, A. Seiden, C. Simopoulos, I. E. Stockdale, W. Toki, B. Tripsas, F. Villa, M. Wang, S. Wasserbaech, A. J. Weinstein, S. Weseler, H. J. Willutzki, D. Wisinski, W. J. Wisniewski, R. Xu, Y. Zhu

    Research output: Contribution to journalArticle

    Abstract

    Results from a partial-wave analysis of the decay J/KS0K in the KS0K invariant-mass range 1.351.6 GeV/c2 are presented. Within the isobar model, the data in this mass range are best described by a mixture of 0-+ and 1++ amplitudes, corresponding to the K*K»+c.c (P wave), K*K»+c.c (S wave), and a0(980) (S wave) channels. These results show that (1430) is not a JPC=0-+ a0(980) resonance, but a mixture of overlapping states.

    Original languageEnglish (US)
    Pages (from-to)2507-2510
    Number of pages4
    JournalPhysical Review Letters
    Volume65
    Issue number20
    DOIs
    StatePublished - 1990

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    S waves
    isobars
    P waves
    decay

    ASJC Scopus subject areas

    • Physics and Astronomy(all)

    Cite this

    Bai, Z., Blaylock, G. T., Bolton, T., Brient, J. C., Browder, T., Brown, J. S., ... Zhu, Y. (1990). Partial-wave analysis of J/KS0K. Physical Review Letters, 65(20), 2507-2510. https://doi.org/10.1103/PhysRevLett.65.2507

    Partial-wave analysis of J/KS0K. / Bai, Z.; Blaylock, G. T.; Bolton, T.; Brient, J. C.; Browder, T.; Brown, J. S.; Bunnell, K. O.; Burchell, M.; Burnett, T. H.; Cassell, R. E.; Coffman, D.; Cook, V.; Coward, D. H.; DeJongh, F.; Dorfan, D. E.; Drinkard, J.; Dubois, G. P.; Eigen, G.; Einsweiler, K. F.; Eisenstein, B. I.; Freese, T.; Gatto, C.; Gladding, G.; Grab, C.; Hauser, J.; Heusch, C. A.; Hitlin, D. G.; Izen, J. M.; Kim, P. C.; Labs, J.; Li, A.; Lockman, W. S.; Mallik, U.; Matthews, C. G.; Mincer, A. I.; Mir, R.; Mockett, P. M.; Nemati, B.; Odian, A.; Parrish, L.; Partridge, R.; Pitman, D.; Plaetzer, S. A.; Richman, J. D.; Sadrozinski, H. F W; Scarlatella, M.; Schalk, T. L.; Schindler, R. H.; Seiden, A.; Simopoulos, C.; Stockdale, I. E.; Toki, W.; Tripsas, B.; Villa, F.; Wang, M.; Wasserbaech, S.; Weinstein, A. J.; Weseler, S.; Willutzki, H. J.; Wisinski, D.; Wisniewski, W. J.; Xu, R.; Zhu, Y.

    In: Physical Review Letters, Vol. 65, No. 20, 1990, p. 2507-2510.

    Research output: Contribution to journalArticle

    Bai, Z, Blaylock, GT, Bolton, T, Brient, JC, Browder, T, Brown, JS, Bunnell, KO, Burchell, M, Burnett, TH, Cassell, RE, Coffman, D, Cook, V, Coward, DH, DeJongh, F, Dorfan, DE, Drinkard, J, Dubois, GP, Eigen, G, Einsweiler, KF, Eisenstein, BI, Freese, T, Gatto, C, Gladding, G, Grab, C, Hauser, J, Heusch, CA, Hitlin, DG, Izen, JM, Kim, PC, Labs, J, Li, A, Lockman, WS, Mallik, U, Matthews, CG, Mincer, AI, Mir, R, Mockett, PM, Nemati, B, Odian, A, Parrish, L, Partridge, R, Pitman, D, Plaetzer, SA, Richman, JD, Sadrozinski, HFW, Scarlatella, M, Schalk, TL, Schindler, RH, Seiden, A, Simopoulos, C, Stockdale, IE, Toki, W, Tripsas, B, Villa, F, Wang, M, Wasserbaech, S, Weinstein, AJ, Weseler, S, Willutzki, HJ, Wisinski, D, Wisniewski, WJ, Xu, R & Zhu, Y 1990, 'Partial-wave analysis of J/KS0K', Physical Review Letters, vol. 65, no. 20, pp. 2507-2510. https://doi.org/10.1103/PhysRevLett.65.2507
    Bai Z, Blaylock GT, Bolton T, Brient JC, Browder T, Brown JS et al. Partial-wave analysis of J/KS0K. Physical Review Letters. 1990;65(20):2507-2510. https://doi.org/10.1103/PhysRevLett.65.2507
    Bai, Z. ; Blaylock, G. T. ; Bolton, T. ; Brient, J. C. ; Browder, T. ; Brown, J. S. ; Bunnell, K. O. ; Burchell, M. ; Burnett, T. H. ; Cassell, R. E. ; Coffman, D. ; Cook, V. ; Coward, D. H. ; DeJongh, F. ; Dorfan, D. E. ; Drinkard, J. ; Dubois, G. P. ; Eigen, G. ; Einsweiler, K. F. ; Eisenstein, B. I. ; Freese, T. ; Gatto, C. ; Gladding, G. ; Grab, C. ; Hauser, J. ; Heusch, C. A. ; Hitlin, D. G. ; Izen, J. M. ; Kim, P. C. ; Labs, J. ; Li, A. ; Lockman, W. S. ; Mallik, U. ; Matthews, C. G. ; Mincer, A. I. ; Mir, R. ; Mockett, P. M. ; Nemati, B. ; Odian, A. ; Parrish, L. ; Partridge, R. ; Pitman, D. ; Plaetzer, S. A. ; Richman, J. D. ; Sadrozinski, H. F W ; Scarlatella, M. ; Schalk, T. L. ; Schindler, R. H. ; Seiden, A. ; Simopoulos, C. ; Stockdale, I. E. ; Toki, W. ; Tripsas, B. ; Villa, F. ; Wang, M. ; Wasserbaech, S. ; Weinstein, A. J. ; Weseler, S. ; Willutzki, H. J. ; Wisinski, D. ; Wisniewski, W. J. ; Xu, R. ; Zhu, Y. / Partial-wave analysis of J/KS0K. In: Physical Review Letters. 1990 ; Vol. 65, No. 20. pp. 2507-2510.
    @article{4cdb56c8267b428db744d6bcbad4193a,
    title = "Partial-wave analysis of J/KS0K",
    abstract = "Results from a partial-wave analysis of the decay J/KS0K in the KS0K invariant-mass range 1.351.6 GeV/c2 are presented. Within the isobar model, the data in this mass range are best described by a mixture of 0-+ and 1++ amplitudes, corresponding to the K*K»+c.c (P wave), K*K»+c.c (S wave), and a0(980) (S wave) channels. These results show that (1430) is not a JPC=0-+ a0(980) resonance, but a mixture of overlapping states.",
    author = "Z. Bai and Blaylock, {G. T.} and T. Bolton and Brient, {J. C.} and T. Browder and Brown, {J. S.} and Bunnell, {K. O.} and M. Burchell and Burnett, {T. H.} and Cassell, {R. E.} and D. Coffman and V. Cook and Coward, {D. H.} and F. DeJongh and Dorfan, {D. E.} and J. Drinkard and Dubois, {G. P.} and G. Eigen and Einsweiler, {K. F.} and Eisenstein, {B. I.} and T. Freese and C. Gatto and G. Gladding and C. Grab and J. Hauser and Heusch, {C. A.} and Hitlin, {D. G.} and Izen, {J. M.} and Kim, {P. C.} and J. Labs and A. Li and Lockman, {W. S.} and U. Mallik and Matthews, {C. G.} and Mincer, {A. I.} and R. Mir and Mockett, {P. M.} and B. Nemati and A. Odian and L. Parrish and R. Partridge and D. Pitman and Plaetzer, {S. A.} and Richman, {J. D.} and Sadrozinski, {H. F W} and M. Scarlatella and Schalk, {T. L.} and Schindler, {R. H.} and A. Seiden and C. Simopoulos and Stockdale, {I. E.} and W. Toki and B. Tripsas and F. Villa and M. Wang and S. Wasserbaech and Weinstein, {A. J.} and S. Weseler and Willutzki, {H. J.} and D. Wisinski and Wisniewski, {W. J.} and R. Xu and Y. Zhu",
    year = "1990",
    doi = "10.1103/PhysRevLett.65.2507",
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    TY - JOUR

    T1 - Partial-wave analysis of J/KS0K

    AU - Bai, Z.

    AU - Blaylock, G. T.

    AU - Bolton, T.

    AU - Brient, J. C.

    AU - Browder, T.

    AU - Brown, J. S.

    AU - Bunnell, K. O.

    AU - Burchell, M.

    AU - Burnett, T. H.

    AU - Cassell, R. E.

    AU - Coffman, D.

    AU - Cook, V.

    AU - Coward, D. H.

    AU - DeJongh, F.

    AU - Dorfan, D. E.

    AU - Drinkard, J.

    AU - Dubois, G. P.

    AU - Eigen, G.

    AU - Einsweiler, K. F.

    AU - Eisenstein, B. I.

    AU - Freese, T.

    AU - Gatto, C.

    AU - Gladding, G.

    AU - Grab, C.

    AU - Hauser, J.

    AU - Heusch, C. A.

    AU - Hitlin, D. G.

    AU - Izen, J. M.

    AU - Kim, P. C.

    AU - Labs, J.

    AU - Li, A.

    AU - Lockman, W. S.

    AU - Mallik, U.

    AU - Matthews, C. G.

    AU - Mincer, A. I.

    AU - Mir, R.

    AU - Mockett, P. M.

    AU - Nemati, B.

    AU - Odian, A.

    AU - Parrish, L.

    AU - Partridge, R.

    AU - Pitman, D.

    AU - Plaetzer, S. A.

    AU - Richman, J. D.

    AU - Sadrozinski, H. F W

    AU - Scarlatella, M.

    AU - Schalk, T. L.

    AU - Schindler, R. H.

    AU - Seiden, A.

    AU - Simopoulos, C.

    AU - Stockdale, I. E.

    AU - Toki, W.

    AU - Tripsas, B.

    AU - Villa, F.

    AU - Wang, M.

    AU - Wasserbaech, S.

    AU - Weinstein, A. J.

    AU - Weseler, S.

    AU - Willutzki, H. J.

    AU - Wisinski, D.

    AU - Wisniewski, W. J.

    AU - Xu, R.

    AU - Zhu, Y.

    PY - 1990

    Y1 - 1990

    N2 - Results from a partial-wave analysis of the decay J/KS0K in the KS0K invariant-mass range 1.351.6 GeV/c2 are presented. Within the isobar model, the data in this mass range are best described by a mixture of 0-+ and 1++ amplitudes, corresponding to the K*K»+c.c (P wave), K*K»+c.c (S wave), and a0(980) (S wave) channels. These results show that (1430) is not a JPC=0-+ a0(980) resonance, but a mixture of overlapping states.

    AB - Results from a partial-wave analysis of the decay J/KS0K in the KS0K invariant-mass range 1.351.6 GeV/c2 are presented. Within the isobar model, the data in this mass range are best described by a mixture of 0-+ and 1++ amplitudes, corresponding to the K*K»+c.c (P wave), K*K»+c.c (S wave), and a0(980) (S wave) channels. These results show that (1430) is not a JPC=0-+ a0(980) resonance, but a mixture of overlapping states.

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    U2 - 10.1103/PhysRevLett.65.2507

    DO - 10.1103/PhysRevLett.65.2507

    M3 - Article

    VL - 65

    SP - 2507

    EP - 2510

    JO - Physical Review Letters

    JF - Physical Review Letters

    SN - 0031-9007

    IS - 20

    ER -