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1 Decay Scheme Ni disintegrates by electron capture (56.6 %) and positron emission (43.4 %) to excited levels in Co. The transition to the ground state has not been observed. Le nickel se désintègre par capture électronique (56,6%) et émission de positrons (43,4%) vers des niveaux excités de cobalt. La transition vers le niveau fondamental n a pas été observée. 2 Nuclear Data T 1/2 ( Ni ) : 35,9 (3) h T 1/2 ( Co ) : 271,80 (5) d Q + ( Ni ) : 3264,2 (26) 2.1 β + Transitions Probability Nature 100 β 0,6 + 320,6 (3) 0,45 (3) Allowed β 0,4 + 482,6 (3) 0,85 (6) Allowed β 0,3 + 735,4 (3) 6,8 (3) Allowed β 0,2 + 862,6 (3) 35,3 (5) Allowed 2.2 Electron Capture Transitions Probability Nature lg ft P K P L P M 100 ɛ 0,11 87 (3) 0,025 (5) Allowed 6 0,8706 (19) 0,1103 (15) 0,0181 (6) ɛ 0,10 156 (3) 0,063 (4) Allowed 6,1 0,8790 (17) 0,1033 (14) 0,0168 (5) ɛ 0,9 460 (3) 0,308 (23) Allowed 6,4 0,8853 (16) 0,0980 (13) 0,0158 (5) ɛ 0,8 533 (3) 0,020 (3) Allowed 7,7 0,88 (16) 0,0977 (13) 0,0158 (5) Tsing Hua Univ. /S. C. Wu 1 12/02/02 27/5/2004

Probability Nature lg ft P K P L P M 100 ɛ 0,7 1131 (3) 0,039 (5) Allowed 8,1 0,8871 (16) 0,0965 (13) 0,0156 (5) ɛ 0,6 1345 (3) 12,1 (6) Allowed 5,7 0,8873 (16) 0,0964 (13) 0,0155 (5) ɛ 0,4 1507 (3) 5,2 (3) Allowed 6,2 0,8874 (16) 0,0963 (13) 0,0155 (5) ɛ 0,3 1759 (3) 9,6 (4) Allowed 6,1 0,8875 (16) 0,0962 (13) 0,0155 (5) ɛ 0,2 1887 (3) 29,3 (5) Allowed 5,6 0,8876 (16) 0,0961 (13) 0,0155 (5) 2.3 Gamma Transitions and Internal Conversion Coefficients P γ+ce Multipolarity α K α L α T 100 γ 3,2(Co) 127,164 (3) 16,4 (5) M1+0,0064%E2 0,0193 (6) 0,00191 (6) 0,0215 (6) γ 6,4(Co) 161,86 (3) 0,0204 (24) M1 0,0104 (3) 0,00102 (3) 0,0115 (3) γ 10,9(Co) 304,1 (1) 0,0020 (6) γ 4,2(Co) 379,941 (20) 0,072 (6) [M1] 0,00129 (4) 0,000124 (4) 0,00143 (4) γ 6,2(Co) 541,9 (1) 0,0036 (5) [E2] 0,00105 (3) 0,000102 (3) 0,00116 (3) γ 5,1(Co) 673,44 (4) 0,0483 (15) M1+0,04%E2 0,00036 (1) 0,000034 (1) 0,00040 (1) γ 6,1(Co) 696,0 (4) 0,0009 (6) [E2] 0,00050 (2) 0,000048 (1) 0,00056 (2) γ 7,2(Co) 755,31 (10) 0,0054 (6) M1+10,9%E2 0,000295 (9) 0,0000282 (8) 0,00033 (1) γ 9,5(Co) 906,99 (5) 0,075 (14) γ 9,4(Co) 1046,55 (14) 0,132 (3) γ 1,0(Co) 1223,8 (3) 0,076 (13) M1+6,3%E2 0,000108 (3) 0,0000103 (3) 0,000120 (4) γ 11,5(Co) 1280,01 (6) 0,0096 (7) γ 10,4(Co) 1350,54 (6) 0,002 (1) γ 2,0(Co) 1377,64 (4) 81,2 (6) E2 0,000095 (3) 0,0000091 (3) 0,000105 (3) γ 10,3(Co) 1603,30 (6) 0,0039 (6) γ 10,2(Co) 1730,48 (6) 0,055 (3) γ 4,0(Co) 17,58 (3) 6,1 (4) E2 γ 5,0(Co) 1897,0 (5) 0,0252 (25) M1+0,16%E2 γ 6,0(Co) 1919,65 (14) 12,5 (5) M1+5,0%E2 γ 7,0(Co) 2133,08 (5) 0,033 (5) M1 γ 8,0(Co) 2730,83 (14) 0,020 (3) γ 9,0(Co) 2804,15 (15) 0,102 (17) E2 γ 11,0(Co) 3177,37 (5) 0,015 (4) Tsing Hua Univ. /S. C. Wu 2 12/02/02 27/5/2004

3 Atomic Data 3.1 Co ω K : 0,388 (4) ω L : 0,0072 (5) n KL : 1,418 (4) 3.1.1 X Radiations Relative probability K Kα 2 6,9153 51,16 Kα 1 6,93032 100 Kβ 1 7,6495 } Kβ 5 7,706 } 20,74 L Ll 0,678 Lγ 0,87 3.1.2 Auger Electrons Relative probability Auger K KLL 5,81 6,10 100 KLX 6,67 6,86 27,3 KXY 7,50 7,58 1,88 Auger L 0,564 0,653 319 Tsing Hua Univ. /S. C. Wu 3 12/02/02 27/5/2004

4 Electron Emissions Electrons per 100 disint. e AL (Co) 0,564 0,653 76,7 (12) e AK (Co) 31,0 (6) KLL 5,81 6,10 } KLX 6,67 6,86 } KXY 7,50 7,58 } ec 3,2 K (Co) 119,46 (3) 0,310 (14) ec 6,4 K (Co) 154,15 (3) 0,00021 (3) β 0,6 + max: 320,6 (3) 0,45 (3) β 0,6 + avg: 138,6 β 0,4 + max: 482,6 (3) 0,85 (6) β 0,4 + avg: 206,1 β 0,3 + max: 735,4 (3) 6,8 (3) β 0,3 + avg: 313,4 β 0,2 + max: 862,6 (3) 35,3 (5) β 0,2 + avg: 368,3 5 Photon Emissions 5.1 XRay Emissions Photons per 100 disint. XL (Co) 0,678 0,870 0,56 (4) XKα 2 (Co) 6,9153 5,84 (12) } Kα XKα 1 (Co) 6,93032 11,42 (23) } XKβ 1 (Co) 7,6495 } 2,37 (6) K β 1 XKβ 5 (Co) 7,706 } Tsing Hua Univ. /S. C. Wu 4 12/02/02 27/5/2004

5.2 Gamma Emissions Photons per 100 disint. γ 3,2 (Co) 127,164 (3) 16,0 (5) γ 6,4 (Co) 161,86 (3) 0,0202 (24) γ 10,9 (Co) 304,1 (1) 0,0020 (6) γ 4,2 (Co) 379,94 (2) 0,072 (6) γ ± 511 86,8 (12) γ 6,2 (Co) 541,9 (1) 0,0036 (5) γ 5,1 (Co) 673,44 (4) 0,0483 (15) γ 6,1 (Co) 696,0 (4) 0,0009 (6) γ 7,2 (Co) 755,3 (1) 0,0054 (6) γ 9,5 (Co) 906,98 (5) 0,075 (14) γ 9,4 (Co) 1046,68 (14) 0,132 (3) γ 1,0 (Co) 1223,8 (3) 0,076 (13) γ 11,5 (Co) 1279,99 (6) 0,0096 (7) γ 10,4 (Co) 1350,52 (6) 0,002 (1) γ 2,0 (Co) 1377,62 (4) 81,2 (6) γ 10,3 (Co) 1603,28 (6) 0,0039 (6) γ 10,2 (Co) 1730,45 (6) 0,055 (3) γ 4,0 (Co) 17,55 (3) 6,1 (4) γ 5,0 (Co) 1897,0 (5) 0,0252 (25) γ 6,0 (Co) 1919,62 (14) 12,5 (5) γ 7,0 (Co) 2133,04 (5) 0,033 (5) γ 8,0 (Co) 2730,76 (14) 0,020 (3) γ 9,0 (Co) 2804,08 (15) 0,102 (17) γ 11,0 (Co) 3177,27 (5) 0,015 (4) 6 Main Production Modes Ni 58(γ,n)Ni Ni 58(n,2n)Ni Ni 58(d,dn)Ni Fe 56(p,γ)Ni Fe 56(d,n)Ni Mn 55(α,2n)Ni 7 References F. Maienschein, J.L. Meem Jr. Phys. Rev. 76 (1949) 899 (Halflife) G. Friedlander, M.L.Perlman, D. Alburger, A. W. Sunyar. Phys. Rev. 80 (1950) 30 (Halflife) P.F. Zweifel. Phys. Rev. 96 (1954) 12 G. Rudstam. Thesis, University of Uppsala (1956) (Halflife) Tsing Hua Univ. /S. C. Wu 5 12/02/02 27/5/2004

P.F. Zweifel. Phys. Rev. 107 (19) 329 J. Konijn, H. L. Hagedoorn, B. van Nooijen. Physica 24 (1958) 129 L.A. Rayburn. Phys. Rev. 122 (1961) 168 (Halflife) G. Chilosi, S. Monaro, R. A. Ricci. Nuovo Cim. 26 (1962) 440 G. Rudstam. Nucl. Phys. 56 (1964) 593 (Halflife, Electron Capture/Beta plus ratio) T.G. Ebrey, P.R. Gray. Nucl. Phys. 61 (1965) 479 (Halflife) C.J. Piluso, D.O. Wells, D.K. McDaniels. Nucl. Phys. 77 (1966) 193 (Gamma ray energies) E.W.A. Lingeman, J. Konijn, F. Diederix, B. J. Meijer. Nucl. Phys. A100 (1967) 136 (Gamma ray energies, Electron Capture/Beta plus ratio) C. Gatrousis, R.A. Meyer, L.G. Mann, J.B. McGrory. Phys. Rev. 180 (1969) 1052 (Gamma ray energies) S.J. Rothman, N.L. Peterson, W.K. Chen, J.J. Hines, R. Bastar, L.C. Robinson, L.J. Nowicki, J.B. Anderso. Phys. Rev. C9 (1974) 2272 (Halflife) I.M. Band, M.B. Trzhaskovskaya, M. A. Listengarten. At. Data. Nucl. Data Tables 18 (1976) 433 (ICC) W. Bambynek, H. Behrens, M.H. Chen, B. Crasemann, M.L. Fitzpatrick, K.W.D. Ledingham, H. Genz, M. Mutterer, R.L. Intemann. Rev. Mod. Phys. 49 (1977) 77 A. Grutter. Int. J. Appl. Radiat. Isotop. 33 (1982) 533 (Halflife) J.K. Dickens. J. Radioanal. Nucl. Chem. 103 (1986) 273 (Halflife) A.M.S. Scardino, O. Helene, P. R. Pascholati, V. R. Vanin. Z. Physik A336 (1990) 313 (Gamma ray energies, Gammaray emission probabilities) M.R.Bhat. Nucl. Data Sheets 67 (1992) 195 (Gammaray emission probabilities) NNDC. The Program LOGFT (1993) (lg ft) G.Audi, A.H. Wapstra. Nucl. Phys. A595 (1995) 409 (Q) E.Schönfeld, H.Janssen. Nucl. Instrum. Methods Phys. Res. A369 (1996) 527 (Atomic Data) H.Janssen, E.Schönfeld. PTB (1997) (EMISSION, a computer program to calculate Xray and Auger electron emission probabilities.) E.Schönfeld, F.Chu, E.Browne. PTB, LBNL (1997) (ECCapture, a computer program to calculate electroncapture probabilities for allowed and firstforbidden nonunique transitions) Tsing Hua Univ. /S. C. Wu 6 12/02/02 27/5/2004

BNM LNHB/CEA Table de Radionucléides Ni 28 29 γ Emission probabilities per 100 disintegrations ε β + 0 Ni 28 29 3/2 ; 0 35,9 (3) h 152 fs 54 fs 11 10 9 6 5 2 2 3 9 5 0,00 0,01 0,00 0,00 0,00 0,05 5/2,7/2 ; 3177,31 (3/2) ; 3108,14 0,025 0,063 37 fs 91 fs 9 8 5 2 2 0,07 0,13 0,10 0,02 (3/2,5/2) ; 2804,18 3/2,5/2 ; 2730,83 0,308 0,02 0,34 ps 22 fs 110 fs 0,27 ps 0,21 ns 19 ps 54 fs 7 6 5 4 3 2 1 4 0,005 0,033 2 6 9 0,020 0,003 0,000 1 2,5 8 3 5 2 0,04 0,02 2 0,07 6,1 5/2 ; 2133,06 5/2 ; 1919,47 7/2 ; 1897,24 3/2 ; 17,596 1/2 ; 1504,82 3/2 ; 1377,65 9/2 ; 1223,79 0,039 12,1 5,2 9,6 29,3 0,45 0,85 6,8 35,3 271,80 (5) d 0 Co 27 30 + Q = 3264,2 % β + + % ε = 100 7/2 ; 0 Tsing Hua Univ. / S. C. Wu Scheme page : 1/2 12/02/2002 12/02/2002

BNM LNHB/CEA Table de Radionucléides Ni 28 29 ε β + 0 Ni 28 29 3/2 ; 0 35,9 (3) h γ Emission probabilities per 100 disintegrations 0,21 ns 19 ps 54 fs 3 2 1 16 6 8 1,2 0,07 1/2 ; 1504,82 3/2 ; 1377,65 9/2 ; 1223,79 9,6 29,3 6,8 35,3 271,80 (5) d 0 Co 27 30 + Q = 3264,2 % β + + % ε = 100 7/2 ; 0 Tsing Hua Univ. / S. C. Wu Scheme page : 2/2 12/02/2002 12/02/2002