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High-statistics study of eta pi0 production in two-photon collisions

The Belle collaboration
Phys.Rev. D80 (2009) 032001, 2009

Abstract (data abstract)
KEK-KEKB Collider. Measurement of the differential and total cross sections for ETA PI0 production in two-photon collisions in the W range 0.84 to 4.0 GeV and range of absolute (COS(THETA *)) less than 0.8. The data sample comes from 223 fb-1 of E+ E- interactions around the Upsilon region.. Numerical values supplied by S. Uehara.

  • Table 1

    Data from F 9

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    The total cross section integrated over ABS(COS(THETA*)) < 0.8.

  • Table 2

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.85 GeV.

  • Table 3

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.87 GeV.

  • Table 4

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.89 GeV.

  • Table 5

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.91 GeV.

  • Table 6

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.93 GeV.

  • Table 7

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.95 GeV.

  • Table 8

    Data from F 8,14

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    The differential cross section as a function of angle for W = 0.97 GeV.

  • Table 9

    Data from F 8,14

    10.17182/hepdata.53739.v1/t9

    The differential cross section as a function of angle for W = 0.99 GeV.

  • Table 10

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.01 GeV.

  • Table 11

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.03 GeV.

  • Table 12

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.05 GeV.

  • Table 13

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.07 GeV.

  • Table 14

    Data from F 8,14

    10.17182/hepdata.53739.v1/t14

    The differential cross section as a function of angle for W = 1.09 GeV.

  • Table 15

    Data from F 8,14

    10.17182/hepdata.53739.v1/t15

    The differential cross section as a function of angle for W = 1.11 GeV.

  • Table 16

    Data from F 8,14

    10.17182/hepdata.53739.v1/t16

    The differential cross section as a function of angle for W = 1.13 GeV.

  • Table 17

    Data from F 8,14

    10.17182/hepdata.53739.v1/t17

    The differential cross section as a function of angle for W = 1.15 GeV.

  • Table 18

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.17 GeV.

  • Table 19

    Data from F 8,14

    10.17182/hepdata.53739.v1/t19

    The differential cross section as a function of angle for W = 1.19 GeV.

  • Table 20

    Data from F 8,14

    10.17182/hepdata.53739.v1/t20

    The differential cross section as a function of angle for W = 1.21 GeV.

  • Table 21

    Data from F 8,14

    10.17182/hepdata.53739.v1/t21

    The differential cross section as a function of angle for W = 1.23 GeV.

  • Table 22

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.25 GeV.

  • Table 23

    Data from F 8,14

    10.17182/hepdata.53739.v1/t23

    The differential cross section as a function of angle for W = 1.27 GeV.

  • Table 24

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.29 GeV.

  • Table 25

    Data from F 8,14

    10.17182/hepdata.53739.v1/t25

    The differential cross section as a function of angle for W = 1.31 GeV.

  • Table 26

    Data from F 8,14

    10.17182/hepdata.53739.v1/t26

    The differential cross section as a function of angle for W = 1.33 GeV.

  • Table 27

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.35 GeV.

  • Table 28

    Data from F 8,14

    10.17182/hepdata.53739.v1/t28

    The differential cross section as a function of angle for W = 1.37 GeV.

  • Table 29

    Data from F 8,14

    10.17182/hepdata.53739.v1/t29

    The differential cross section as a function of angle for W = 1.39 GeV.

  • Table 30

    Data from F 8,14

    10.17182/hepdata.53739.v1/t30

    The differential cross section as a function of angle for W = 1.41 GeV.

  • Table 31

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.43 GeV.

  • Table 32

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.45 GeV.

  • Table 33

    Data from F 8,14

    10.17182/hepdata.53739.v1/t33

    The differential cross section as a function of angle for W = 1.47 GeV.

  • Table 34

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.49 GeV.

  • Table 35

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.51 GeV.

  • Table 36

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.53 GeV.

  • Table 37

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.55 GeV.

  • Table 38

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.57 GeV.

  • Table 39

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.59 GeV.

  • Table 40

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.62 GeV.

  • Table 41

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.66 GeV.

  • Table 42

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.70 GeV.

  • Table 43

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.74 GeV.

  • Table 44

    Data from F 8,14

    10.17182/hepdata.53739.v1/t44

    The differential cross section as a function of angle for W = 1.78 GeV.

  • Table 45

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.82 GeV.

  • Table 46

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.86 GeV.

  • Table 47

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.90 GeV.

  • Table 48

    Data from F 8,14

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    The differential cross section as a function of angle for W = 1.94 GeV.

  • Table 49

    Data from F 8,14

    10.17182/hepdata.53739.v1/t49

    The differential cross section as a function of angle for W = 1.98 GeV.

  • Table 50

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.02 GeV.

  • Table 51

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.06 GeV.

  • Table 52

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.10 GeV.

  • Table 53

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.14 GeV.

  • Table 54

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.18 GeV.

  • Table 55

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.22 GeV.

  • Table 56

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.26 GeV.

  • Table 57

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.30 GeV.

  • Table 58

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.34 GeV.

  • Table 59

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.38 GeV.

  • Table 60

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.45 GeV.

  • Table 61

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.55 GeV.

  • Table 62

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.65 GeV.

  • Table 63

    Data from F 8,14

    10.17182/hepdata.53739.v1/t63

    The differential cross section as a function of angle for W = 2.75 GeV.

  • Table 64

    Data from F 8,14

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    The differential cross section as a function of angle for W = 2.85 GeV.

  • Table 65

    Data from F 8,14

    10.17182/hepdata.53739.v1/t65

    The differential cross section as a function of angle for W = 2.95 GeV.

  • Table 66

    Data from F 8,14

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    The differential cross section as a function of angle for W = 3.05 GeV.

  • Table 67

    Data from F 8,14

    10.17182/hepdata.53739.v1/t67

    The differential cross section as a function of angle for W = 3.15 GeV.

  • Table 68

    Data from F 8,14

    10.17182/hepdata.53739.v1/t68

    The differential cross section as a function of angle for W = 3.25 GeV.

  • Table 69

    Data from F 8,14

    10.17182/hepdata.53739.v1/t69

    The differential cross section as a function of angle for W = 3.35 GeV.

  • Table 70

    Data from F 8,14

    10.17182/hepdata.53739.v1/t70

    The differential cross section as a function of angle for W = 3.45 GeV.

  • Table 71

    Data from F 8,14

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    The differential cross section as a function of angle for W = 3.55 GeV.

  • Table 72

    Data from F 8,14

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    The differential cross section as a function of angle for W = 3.65 GeV.

  • Table 73

    Data from F 8,14

    10.17182/hepdata.53739.v1/t73

    The differential cross section as a function of angle for W = 3.75 GeV.

  • Table 74

    Data from F 8,14

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    The differential cross section as a function of angle for W = 3.85 GeV.

  • Table 75

    Data from F 8,14

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    The differential cross section as a function of angle for W = 3.95 GeV.

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