Model-independent extraction of form factors and |Vcb| in (B)over-bar → Dl-(v)over-barl with hadronic tagging at BABAR

被引:0
|
作者
Lees, J. P.
Poireau, V.
Tisserand, V.
Grauges, E.
Palano, A.
Eigen, G.
Brown, D. N.
Kolomensky, Yu. G.
Fritsch, M.
Koch, H.
Cheaib, R.
Hearty, C.
Mattison, T. S.
McKenna, J. A.
So, R. Y.
Blinov, V. E.
Buzykaev, A. R.
Druzhinin, V. P.
Kozyrev, E. A.
Kravchenko, E. A.
Serednyakov, S. I.
Skovpen, Yu. I.
Solodov, E. P.
Todyshev, K. Yu.
Lankford, A. J.
Dey, B.
Gary, J. W.
Long, O.
Eisner, A. M.
Lockman, W. S.
Vazquez, W. Panduro
Chao, D. S.
Cheng, C. H.
Echenard, B.
Flood, K. T.
Hitlin, D. G.
Li, Y.
Lin, D. X.
Middleton, S.
Miyashita, T. S.
Ongmongkolkul, P.
Oyang, J.
Porter, F. C.
Rohrken, M.
Meadows, B. T.
Sokoloff, M. D.
Smith, J. G.
Wagner, S. R.
Bernard, D.
Verderi, M.
机构
关键词
CP-VIOLATION; DETECTOR; DECAYS; BOUNDS;
D O I
10.1103/PhysRevD.110.032018
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Using the entire BABAR gamma(4S) dataset, the first two-dimensional unbinned angular analysis of the semileptonic decay (B) over bar -> Dl(-)(v) over bar (l) is performed, employing hadronic reconstruction of the tag-side B meson from gamma(4S) -> B (B) over bar. Here, l denotes the light charged leptons e and mu. Anovel data-driven signal-background separation procedure with minimal dependence on simulation is developed. This procedure preserves all multidimensional correlations present in the data. The expected sin(2) theta(l) dependence of the differential decay rate in the Standard Model is demonstrated, where theta(l) is the lepton helicity angle. Including input from the latest lattice QCD calculations and previously available experimental data, the underlying form factors are extracted using both model-independent (BGL) and dependent (CLN) methods. Comparisons with lattice calculations show flavor SU(3) symmetry to be a good approximation in the B-(s) -> D-(s) sector. Using the BGL results, the CKM matrix element vertical bar V-cb vertical bar = (41.09 +/- 1.16) x 10(-3) and the Standard Model prediction of the lepton-flavor universality violation variable R(D) = 0.300 +/- 0.004, are extracted. The value of vertical bar V-cb vertical bar from (B) over bar -> Dl(-)(v) over bar (l) tends to be higher than that extracted using (B) over bar -> Dl(-)(v) over bar (l). The Standard Model R(D) calculation is at a 1.97 sigma tension with the latest HFLAV experimental average.
引用
收藏
页数:17
相关论文
共 39 条
  • [31] Measurements of vertical bar V-cb vertical bar form factors and branching fractions in the decays (B)over-bar(0)->D(*+)l(-)(nu)over-bar(l) and (B)over-bar(0)->D(+)l(-)(nu)over-bar(l)
    Buskulic, D
    DeBonis, I
    Decamp, D
    Ghez, P
    Goy, C
    Lees, JP
    Lucotte, A
    Minard, MN
    Nief, JY
    Odier, P
    Pietrzyk, B
    Casado, MP
    Chmeissani, M
    Comas, P
    Crespo, JM
    Delfino, M
    Efthymiopoulos, I
    Fernandez, E
    FernandezBosman, M
    Garrido, L
    Juste, A
    Martinez, M
    Orteu, S
    Padilla, C
    Park, IC
    Pascual, A
    Perlas, JA
    Riu, I
    Sanchez, F
    Teubert, F
    Colaleo, A
    Creanza, D
    dePalma, M
    Gelao, G
    Girone, M
    Iaselli, G
    Maggi, G
    Maggi, M
    Marinelli, N
    Nuzzo, S
    Ranieri, A
    Raso, G
    Ruggieri, F
    Selvaggi, G
    Silvestris, L
    Tempesta, P
    Tricomi, A
    Zito, G
    Huang, X
    Lin, J
    PHYSICS LETTERS B, 1997, 395 (3-4) : 373 - 387
  • [32] MODEL-INDEPENDENT CONSTRAINTS ON THE ISGUR-WISE FUNCTION AND THE UPSILON-B(B)OVER-BAR COUPLINGS
    CAPRINI, I
    PHYSICAL REVIEW D, 1995, 52 (11): : 6349 - 6355
  • [33] B→πl(v)over-bar form factors with NRQCD heavy quark and clover light quark actions
    Aoki, S
    Fukugita, M
    Hashimoto, S
    Ishikawa, KI
    Ishizuka, N
    Iwasaki, Y
    Kanaya, K
    Kaneda, T
    Kaya, S
    Kuramashi, Y
    Okawa, M
    Onogi, T
    Tominaga, S
    Tsutsui, N
    Ukawa, A
    Yamada, N
    Yoshie, T
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2000, 83-4 : 325 - 327
  • [34] Studying W′ boson contributions in (B)over-bar → D(*) l- (v)over-barl decays within general SU(2)1 ⊗ SU(2)2 ⊗ U(1)X models
    Wang, Yi-Long
    Wei, Bin
    Sheng, Jin-Huan
    Wang, Ru-Min
    Yang, Ya-Dong
    JOURNAL OF PHYSICS G-NUCLEAR AND PARTICLE PHYSICS, 2018, 45 (05)
  • [35] Analyzing new physics in the decays (B)over-bar0 → D(*)τ-(ν)over-barτ with form factors obtained from the covariant quark model
    Ivanov, M. A.
    Korner, J. G.
    Tran, C. T.
    PHYSICAL REVIEW D, 2016, 94 (09)
  • [36] Measurements of F2 and xF3v-xF3v from CCPR vμ-Fe and (v)over-barμ-Fe data in a physics model-independent way
    Yang, UK
    Adams, T
    Alton, A
    Arroyo, CG
    Avvakumov, S
    de Barbaro, L
    de Barbaro, P
    Bazarko, AO
    Bernstein, RH
    Bodek, A
    Bolton, T
    Brau, J
    Buchholz, D
    Budd, H
    Bugel, L
    Conrad, J
    Drucker, RB
    Fleming, BT
    Formaggio, JA
    Frey, R
    Goldman, J
    Goncharov, M
    Harris, DA
    Johnson, RA
    Kim, JH
    King, BJ
    Kinnel, T
    Koutsoliotas, S
    Lamm, MJ
    Marsh, W
    Mason, D
    McFarland, KS
    McNulty, C
    Mishra, SR
    Naples, D
    Nienaber, P
    Romosan, A
    Sakumoto, WK
    Schellman, H
    Sciulli, FJ
    Seligman, WG
    Shaevitz, MH
    Smith, WH
    Spentzouris, P
    Stern, EG
    Suwonjandee, N
    Vaitaitis, A
    Vakili, M
    Yu, J
    Zeller, GP
    PHYSICAL REVIEW LETTERS, 2001, 86 (13) : 2742 - 2745
  • [37] FORM-FACTORS FOR B-]PI-L(V)OVER-BAR(L) AND B-]K-ASTERISK-GAMMA DECAYS ON THE LATTICE
    BURFORD, DR
    DUONG, HD
    FLYNN, JM
    GOUGH, BJ
    HAZEL, NM
    NIEVES, J
    SHANAHAN, HP
    NUCLEAR PHYSICS B, 1995, 447 (2-3) : 425 - 437
  • [38] Standard Model predictions for B → Kl +l- , B- → Kl1-l2+ and B → Kν(ν)over-bar over line using form factors from Nf=2+1+1 lattice QCD
    Parrott, W. G.
    Bouchard, C.
    Davies, C. T. H.
    PHYSICAL REVIEW D, 2023, 107 (01)
  • [39] Standard Model predictions for B → Kl+ l-, B → Kl1- l2+ and B → Kν(ν)over-bar using form factors from Nf = 2 + 1 + 1 lattice QCD (vol 107, 014511, 2023)
    Parrott, W. G.
    Bouchard, C.
    Davies, C. T. H.
    PHYSICAL REVIEW D, 2023, 107 (11)