JENDL/AD-2017 Sr- 89 pointwise at 293.6K 0 0 3.808900+4 8.814369+1 0 0 6 13840 1451 1 0.000000+0 1.000000+0 0 0 0 63840 1451 2 1.000000+0 2.000000+7 0 0 10 03840 1451 3 2.936000+2 0.000000+0 1 0 199 263840 1451 4 38-Sr- 89 JAEA EVAL-APR13 K.Shibata, A.Ichihara, S.Kunieda 3840 1451 5 DIST-MAR18 20130517 3840 1451 6 ----JENDL/AD-2017 MATERIAL 3840 3840 1451 7 -----INCIDENT NEUTRON DATA 3840 1451 8 ------ENDF-6 FORMAT 3840 1451 9 3840 1451 10 History 3840 1451 11 2009-08 Evaluated by mainly using POD/1/. The evaluation was 3840 1451 12 performed /2/ for JENDL-4.0. 3840 1451 13 2013-04 File-making was done for JENDL Activation File. 3840 1451 14 3840 1451 15 MF= 1 General information 3840 1451 16 MT=451 Descriptive data and directory 3840 1451 17 3840 1451 18 MF= 2 Resonance parameters 3840 1451 19 MT=151 Scattering radius only 3840 1451 20 AP=0.123x(AWR)**(1/3)+0.08 3840 1451 21 3840 1451 22 MF= 3 Neutron cross sections 3840 1451 23 MT= 16 (n,2n) cross section 3840 1451 24 Calculated with POD code /1/. 3840 1451 25 3840 1451 26 MT= 17 (n,3n) cross section 3840 1451 27 Calculated with POD code /1/. 3840 1451 28 3840 1451 29 MT= 22 (n,na) cross section 3840 1451 30 Calculated with POD code /1/. 3840 1451 31 3840 1451 32 MT= 28 (n,np) cross section 3840 1451 33 Calculated with POD code /1/. 3840 1451 34 3840 1451 35 MT= 32 (n,nd) cross section 3840 1451 36 Calculated with POD code /1/. 3840 1451 37 3840 1451 38 MT=102 Capture cross section 3840 1451 39 Calculated with POD code /1/. Below 1.4 keV, the 1/v 3840 1451 40 cross sections are assumed. 3840 1451 41 3840 1451 42 MT=103 (n,p) cross section 3840 1451 43 Calculated with POD code /1/. 3840 1451 44 3840 1451 45 MT=104 (n,d) cross section 3840 1451 46 Calculated with POD code /1/. 3840 1451 47 3840 1451 48 MT=105 (n,t) cross section 3840 1451 49 Calculated with POD code /1/. 3840 1451 50 3840 1451 51 MT=106 (n,He3) cross section 3840 1451 52 Calculated with POD code /1/. 3840 1451 53 3840 1451 54 MT=107 (n,a) cross section 3840 1451 55 Calculated with POD code /1/. 3840 1451 56 3840 1451 57 MF= 8 Information on decay data 3840 1451 58 MT= 16 (n,2n) reaction 3840 1451 59 3840 1451 60 MT= 17 (n,3n) reaction 3840 1451 61 3840 1451 62 MT= 22 (n,na) reaction 3840 1451 63 3840 1451 64 MT= 28 (n,np) reaction 3840 1451 65 3840 1451 66 MT= 32 (n,nd) reaction 3840 1451 67 3840 1451 68 MT=102 (n,g) reaction 3840 1451 69 3840 1451 70 MT=103 (n,p) reaction 3840 1451 71 3840 1451 72 MT=104 (n,d) reaction 3840 1451 73 3840 1451 74 MT=105 (n,t) reaction 3840 1451 75 3840 1451 76 MT=106 (n,He3) reaction 3840 1451 77 3840 1451 78 MT=107 (n,a) reaction 3840 1451 79 3840 1451 80 MF=10 Nuclide production cross sections 3840 1451 81 MT= 17 Partial (n,3n) reactions 3840 1451 82 Calculated with POD code /1/. 3840 1451 83 3840 1451 84 MT= 22 Partial (n,na) reactions 3840 1451 85 Calculated with POD code /1/. 3840 1451 86 3840 1451 87 3840 1451 88 3840 1451 89 *************************************************************** 3840 1451 90 * Nuclear Model Calculations with POD Code /1/ * 3840 1451 91 *************************************************************** 3840 1451 92 1. Theoretical models 3840 1451 93 The POD code is based on the spherical optical model, the 3840 1451 94 distorted-wave Born approximaiton (DWBA), one-component exciton 3840 1451 95 preequilibrium model, and the Hauser-Feshbach-Moldauer statis- 3840 1451 96 tical model. With the preequilibrim model, semi-empirical 3840 1451 97 pickup and knockout process can be taken into account for 3840 1451 98 composite-particle emission. The gamma-ray emission from the 3840 1451 99 compound nucleus can be calculated within the framework of the 3840 1451 100 exciton model. The code is capable of reading in particle 3840 1451 101 transmission coefficients calculated by separate spherical or 3840 1451 102 coupled-channel optical model code. 3840 1451 103 3840 1451 104 2. Optical model parameters 3840 1451 105 Neutrons: 3840 1451 106 Coupled-channel optical model parameters /3/ 3840 1451 107 Protons: 3840 1451 108 Koning and Delaroche /4/ 3840 1451 109 Deuterons: 3840 1451 110 Lohr and Haeberli /5/ 3840 1451 111 Tritons: 3840 1451 112 Becchetti and Greenlees /6/ 3840 1451 113 He-3: 3840 1451 114 Becchetti and Greenlees /6/ 3840 1451 115 Alphas: 3840 1451 116 Lemos /7/ potentials modified by Arthur and Young /8/ 3840 1451 117 3840 1451 118 3. Level scheme of Sr- 89 3840 1451 119 ------------------------- 3840 1451 120 No. Ex(MeV) J PI 3840 1451 121 ------------------------- 3840 1451 122 0 0.00000 5/2 + 3840 1451 123 1 1.03200 1/2 + 3840 1451 124 2 1.47336 7/2 + 3840 1451 125 3 1.94021 5/2 + 3840 1451 126 4 2.00760 3/2 + 3840 1451 127 5 2.05740 1/2 + 3840 1451 128 6 2.06140 7/2 + 3840 1451 129 7 2.07880 11/2 - 3840 1451 130 8 2.28019 3/2 - 3840 1451 131 9 2.45164 3/2 + 3840 1451 132 10 2.57012 3/2 - 3840 1451 133 11 2.67500 7/2 + 3840 1451 134 12 2.70713 5/2 - 3840 1451 135 13 2.80500 5/2 + 3840 1451 136 14 2.91600 3/2 + 3840 1451 137 15 2.93060 9/2 + 3840 1451 138 16 2.96170 9/2 + 3840 1451 139 17 3.07300 3/2 + 3840 1451 140 18 3.12600 3/2 + 3840 1451 141 19 3.20000 5/2 - 3840 1451 142 20 3.22791 3/2 - 3840 1451 143 21 3.24900 5/2 + 3840 1451 144 22 3.30312 5/2 + 3840 1451 145 23 3.38780 15/2 - 3840 1451 146 24 3.40380 11/2 - 3840 1451 147 25 3.42100 11/2 - 3840 1451 148 26 3.43306 1/2 + 3840 1451 149 27 3.50868 5/2 + 3840 1451 150 28 3.52410 13/2 - 3840 1451 151 ------------------------- 3840 1451 152 Levels above 3.53410 MeV are assumed to be continuous. 3840 1451 153 3840 1451 154 4. Level density parameters 3840 1451 155 Energy-dependent parameters of Mengoni-Nakajima /9/ were used 3840 1451 156 ---------------------------------------------------------- 3840 1451 157 Nuclei a* Pair Esh T E0 Ematch Elv_max 3840 1451 158 1/MeV MeV MeV MeV MeV MeV MeV 3840 1451 159 ---------------------------------------------------------- 3840 1451 160 Sr- 90 11.750 2.530 0.151 0.778 1.140 7.585 3.450 3840 1451 161 Sr- 89 10.955 1.272 -0.954 0.720 1.043 4.477 3.524 3840 1451 162 Sr- 88 11.476 2.558 -1.509 0.753 2.134 6.189 4.515 3840 1451 163 Sr- 87 12.367 1.287 -0.021 0.633 0.786 4.453 2.596 3840 1451 164 Rb- 89 11.144 1.272 0.815 0.775 -0.065 6.238 1.999 3840 1451 165 Rb- 88 10.406 0.000 -0.431 0.771 -0.492 3.809 1.916 3840 1451 166 Rb- 87 10.932 1.287 -0.777 0.871 -0.070 6.722 2.414 3840 1451 167 Kr- 87 12.111 1.287 -0.112 0.649 0.793 4.518 3.172 3840 1451 168 Kr- 86 11.310 2.588 -0.507 0.715 2.085 6.130 3.575 3840 1451 169 Kr- 85 11.890 1.302 0.718 0.695 0.285 5.433 2.637 3840 1451 170 ---------------------------------------------------------- 3840 1451 171 3840 1451 172 5. Gamma-ray strength functions 3840 1451 173 M1, E2: Standard Lorentzian (SLO) 3840 1451 174 E1 : Generalized Lorentzian (GLO) /10/ 3840 1451 175 3840 1451 176 6. Preequilibrium process 3840 1451 177 Preequilibrium is on for n, p, d, t, He-3, and alpha. 3840 1451 178 Preequilibrium capture is on. 3840 1451 179 3840 1451 180 References 3840 1451 181 1) A.Ichihara et al., JAEA-Data/Code 2007-012 (2007). 3840 1451 182 2) K.Shibata, A.Ichihara, S.Kunieda, J. Nucl. Sci. Technol., 3840 1451 183 47, 1055 (2010). 3840 1451 184 3) S.Kunieda et al., J. Nucl. Sci. Technol. 44, 838 (2007). 3840 1451 185 4) A.J.Koning, J.P.Delaroche, Nucl. Phys. A713, 231 (2003). 3840 1451 186 5) J.M.Lohr, W.Haeberli, Nucl. Phys. A232, 381 (1974). 3840 1451 187 6) F.D.Becchetti,Jr., G.W.Greenlees, "Polarization 3840 1451 188 Phenomena in Nuclear Reactions," p.682, The University 3840 1451 189 of Wisconsin Press (1971). 3840 1451 190 7) O.F.Lemos, Orsay Report, Series A, No.136 (1972). 3840 1451 191 8) E.D.Arthur, P.G.Young, LA-8626-MS (1980). 3840 1451 192 9) A.Mengoni, Y.Nakajima, J. Nucl. Sci. Technol. 31, 151 3840 1451 193 (1994). 3840 1451 194 10) J.Kopecky, M.Uhl, Nucl. Sci. Eng. 41, 1941 (1990). 3840 1451 195 3840 1451 196 ***************** Program LINEAR (VERSION 2017-1) ***************3840 1451 197 For All Data Greater than 1.0000E-10 barns in Absolute Value 3840 1451 198 Data Linearized to Within an Accuracy of .100000000 per-cent 3840 1451 199 ***************** Program SIGMA1 (VERSION 2017-1) ***************3840 1451 200 Data Doppler Broadened to 293.600000 Kelvin 3840 1451 201 for All Data Greater than 1.0000E-10 barns in Absolute Value 3840 1451 202 Data Linearized to Within an Accuracy of .100000000 per-cent 3840 1451 203 1 451 229 13840 1451 204 2 151 4 13840 1451 205 3 16 10 13840 1451 206 3 17 5 13840 1451 207 3 22 7 13840 1451 208 3 28 7 13840 1451 209 3 32 5 13840 1451 210 3 102 130 13840 1451 211 3 103 11 13840 1451 212 3 104 8 13840 1451 213 3 105 7 13840 1451 214 3 106 5 13840 1451 215 3 107 13 13840 1451 216 8 16 2 13840 1451 217 8 17 3 13840 1451 218 8 22 3 13840 1451 219 8 28 2 13840 1451 220 8 32 2 13840 1451 221 8 102 2 13840 1451 222 8 103 2 13840 1451 223 8 104 2 13840 1451 224 8 105 2 13840 1451 225 8 106 2 13840 1451 226 8 107 2 13840 1451 227 10 17 8 13840 1451 228 10 22 13 13840 1451 229 3840 1 099999 3840 0 0 0 3.808900+4 8.814369+1 0 0 1 03840 2151 1 3.808900+4 1.000000+0 0 0 1 03840 2151 2 1.000000-5 1.000000+5 0 0 0 03840 2151 3 2.500000+0 6.273967-1 0 0 0 03840 2151 4 3840 2 099999 3840 0 0 0 3.808900+4 8.814369+1 0 0 0 03840 3 16 1 -6.358718+6-6.358718+6 0 0 1 203840 3 16 2 20 2 0 0 0 03840 3 16 3 6.430858+6 0.000000+0 6.500000+6 0.000000+0 7.000000+6 8.687000-23840 3 16 4 7.500000+6 2.543000-1 8.000000+6 4.055000-1 8.500000+6 5.480000-13840 3 16 5 9.000000+6 6.607000-1 9.500000+6 7.732000-1 1.000000+7 8.627000-13840 3 16 6 1.100000+7 1.041000+0 1.200000+7 1.194000+0 1.300000+7 1.296000+03840 3 16 7 1.400000+7 1.356000+0 1.450000+7 1.378000+0 1.500000+7 1.386000+03840 3 16 8 1.600000+7 1.409000+0 1.700000+7 1.417000+0 1.800000+7 1.422000+03840 3 16 9 1.900000+7 1.390000+0 2.000000+7 1.288000+0 3840 3 16 10 3840 3 099999 3.808900+4 8.814369+1 0 0 0 03840 3 17 1 -1.747136+7-1.747136+7 0 0 1 53840 3 17 2 5 2 0 0 0 03840 3 17 3 1.766958+7 0.000000+0 1.800000+7 0.000000+0 1.806252+7 2.033150-33840 3 17 4 1.900000+7 3.371300-2 2.000000+7 1.343400-1 3840 3 17 5 3840 3 099999 3.808900+4 8.814369+1 0 0 0 03840 3 22 1 -7.153790+6-7.153790+6 0 0 1 113840 3 22 2 11 2 0 0 0 03840 3 22 3 7.234951+6 0.000000+0 7.543281+6 0.000000+0 1.300000+7 0.000000+03840 3 22 4 1.400000+7 4.452000-7 1.450000+7 2.227200-6 1.500000+7 1.015920-53840 3 22 5 1.600000+7 6.496700-5 1.700000+7 2.544000-4 1.800000+7 6.834200-43840 3 22 6 1.900000+7 1.353200-3 2.000000+7 2.162700-3 3840 3 22 7 3840 3 099999 3.808900+4 8.814369+1 0 0 0 03840 3 28 1 -1.088911+7-1.088911+7 0 0 1 103840 3 28 2 10 2 0 0 0 03840 3 28 3 1.101265+7 0.000000+0 1.300000+7 0.000000+0 1.400000+7 8.276000-63840 3 28 4 1.450000+7 4.331000-5 1.500000+7 1.224000-4 1.600000+7 6.773000-43840 3 28 5 1.700000+7 2.174000-3 1.800000+7 4.869000-3 1.900000+7 8.519000-33840 3 28 6 2.000000+7 1.276000-2 3840 3 28 7 3840 3 099999 3.808900+4 8.814369+1 0 0 0 03840 3 32 1 -1.474707+7-1.474707+7 0 0 1 63840 3 32 2 6 2 0 0 0 03840 3 32 3 1.491437+7 0.000000+0 1.600000+7 0.000000+0 1.700000+7 8.71800-103840 3 32 4 1.800000+7 4.939000-7 1.900000+7 1.405000-5 2.000000+7 1.105000-43840 3 32 5 3840 3 099999 3.808900+4 8.814369+1 0 0 0 03840 3102 1 7.803780+6 7.803780+6 0 0 1 3803840 3102 2 380 2 0 0 0 03840 3102 3 1.000000-5 2.112825+1 1.103037-5 2.011725+1 1.216691-5 1.915462+13840 3102 4 1.342055-5 1.823805+1 1.480336-5 1.736534+1 1.632865-5 1.653439+13840 3102 5 1.801111-5 1.574321+1 1.986691-5 1.498988+1 2.191394-5 1.427260+13840 3102 6 2.417189-5 1.358964+1 2.666248-5 1.293936+1 2.940971-5 1.232020+13840 3102 7 3.243999-5 1.173067+1 3.578251-5 1.116934+1 3.946943-5 1.063488+13840 3102 8 4.353624-5 1.012599+1 4.802208-5 9.641446+0 5.297013-5 9.180092+03840 3102 9 5.842801-5 8.740813+0 6.444825-5 8.322555+0 7.108881-5 7.924311+03840 3102 10 7.841358-5 7.545122+0 8.649308-5 7.184078+0 9.540506-5 6.840311+03840 3102 11 1.052353-4 6.512992+0 1.160784-4 6.201336+0 1.280388-4 5.904593+03840 3102 12 1.412315-4 5.622049+0 1.557836-4 5.353026+0 1.718351-4 5.096875+03840 3102 13 1.895404-4 4.852980+0 2.090701-4 4.620757+0 2.306120-4 4.399645+03840 3102 14 2.543736-4 4.189114+0 2.805835-4 3.988657+0 3.094939-4 3.797791+03840 3102 15 3.413832-4 3.616059+0 3.765583-4 3.443023+0 4.153577-4 3.278266+03840 3102 16 4.581549-4 3.121393+0 5.053618-4 2.972027+0 5.574328-4 2.829808+03840 3102 17 6.148689-4 2.694395+0 6.782232-4 2.565461+0 7.481052-4 2.442696+03840 3102 18 8.251877-4 2.325807+0 9.102125-4 2.214510+0 1.003998-3 2.108539+03840 3102 19 1.107447-3 2.007640+0 1.221555-3 1.911568+0 1.347420-3 1.820094+03840 3102 20 1.486254-3 1.732997+0 1.639393-3 1.650068+0 1.808311-3 1.571107+03840 3102 21 1.994634-3 1.495924+0 2.200155-3 1.424340+0 2.426853-3 1.356180+03840 3102 22 2.676908-3 1.291283+0 2.952729-3 1.229491+0 3.256969-3 1.170656+03840 3102 23 3.592557-3 1.114636+0 3.962723-3 1.061297+0 4.371030-3 1.010511+03840 3102 24 4.821407-3 9.621547-1 5.318191-3 9.161129-1 5.866161-3 8.722751-13840 3102 25 6.470592-3 8.305364-1 7.137302-3 7.907976-1 7.872708-3 7.529650-13840 3102 26 8.683888-3 7.169497-1 9.578649-3 6.826669-1 1.056560-2 6.500341-13840 3102 27 1.165425-2 6.189691-1 1.285507-2 5.893898-1 1.417962-2 5.612168-13840 3102 28 1.564064-2 5.343782-1 1.725221-2 5.088120-1 1.902982-2 4.844648-13840 3102 29 2.099059-2 4.612807-1 2.315340-2 4.392077-1 2.524188-2 4.206449-13840 3102 30 2.530000-2 4.201614-1 2.790683-2 4.000538-1 3.078227-2 3.809126-13840 3102 31 3.395398-2 3.626929-1 3.745250-2 3.453389-1 4.131149-2 3.288103-13840 3102 32 4.556810-2 3.130800-1 5.026329-2 2.981006-1 5.544227-2 2.838249-13840 3102 33 6.115487-2 2.702353-1 6.745608-2 2.573194-1 7.440655-2 2.450098-13840 3102 34 8.207318-2 2.332718-1 9.052975-2 2.221176-1 9.985766-2 2.114953-13840 3102 35 0.11014669 2.013648-1 0.12149586 1.917134-1 0.13401443 1.825578-13840 3102 36 0.14886562 1.732209-1 0.16420428 1.649094-1 0.18112339 1.570325-13840 3102 37 0.19978579 1.495226-1 0.22037111 1.423603-1 0.24307748 1.355326-13840 3102 38 0.26812344 1.290615-1 0.29782170 1.224680-1 0.32850834 1.165836-13840 3102 39 0.36235683 1.110221-1 0.39969298 1.057104-1 0.44398611 1.002928-13840 3102 40 0.48973308 9.548250-2 0.54019369 9.092532-2 0.60426002 8.597087-23840 3102 41 0.66652113 8.184287-2 0.74034726 7.766819-2 0.82239097 7.369388-23840 3102 42 0.90712763 7.016270-2 1.00059530 6.679738-2 1.09596255 6.384055-23840 3102 43 1.21741481 6.056477-2 1.34285352 5.765777-2 1.50211435 5.452382-23840 3102 44 1.65688763 5.191952-2 1.82760828 4.943252-2 2.01591946 4.705795-23840 3102 45 2.20805779 4.498074-2 2.43556933 4.281819-2 2.68652296 4.076279-23840 3102 46 3.00514140 3.854592-2 3.31478201 3.670712-2 3.63089376 3.507085-23840 3102 47 3.97695613 3.350636-2 4.35621563 3.201536-2 4.87285764 3.027147-23840 3102 48 5.33729224 2.892056-2 5.97028877 2.734377-2 6.58544912 2.603989-23840 3102 49 7.21346564 2.488033-2 7.90098479 2.377270-2 8.65445640 2.271011-23840 3102 50 9.68086468 2.147456-2 10.6783515 2.044632-2 11.9447913 1.933041-23840 3102 51 13.1755462 1.840970-2 14.4313143 1.759039-2 15.6968190 1.686597-23840 3102 52 17.1937347 1.611059-2 19.3676116 1.518239-2 21.2145897 1.450623-23840 3102 53 23.5643893 1.376346-2 26.3590980 1.301561-2 28.8728140 1.243604-23840 3102 54 31.4047167 1.192384-2 34.3979165 1.138970-2 38.7488926 1.073362-23840 3102 55 42.4420697 1.025579-2 46.8151711 9.766139-3 52.3673949 9.232749-33840 3102 56 57.7631716 8.792198-3 62.8285153 8.430052-3 68.8201106 8.052039-33840 3102 57 77.5213297 7.588607-3 84.9140943 7.250561-3 93.0073008 6.929527-33840 3102 58 101.163258 6.644470-3 109.269029 6.393962-3 116.376623 6.194608-33840 3102 59 125.701375 5.959817-3 137.682037 5.692627-3 155.097373 5.364965-33840 3102 60 169.879784 5.126068-3 185.976086 4.900367-3 202.284623 4.698781-33840 3102 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