1 Decay Scheme. 2 Nuclear Data. 2.1 Electron Capture Transitions. 2.2 Gamma Transitions and Internal Conversion Coefficients

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1 1 Decay Scheme Co decays 100% by electron capture to the excited levels of kev (0.183%) and kev (99.80%) in Fe. Le cobalt se désintègre par capture électronique vers des niveaux excités du fer. 2 Nuclear Data T 1/2 ( Co ) : 271,81 (4) d Q + ( Co ) : 836,2 (5) kev 2.1 Electron Capture Transitions Probability (%) Nature lg ft P K P L P M ɛ 0,4 129,8 (5) 0,183 (7) Allowed 7,69 0,8789 (17) 0,1035 (14) 0,0168 (6) ɛ 0,3 469,4 (5) <0,002 2nd Forbidden >10,8 ɛ 0,2 699,7 (5) 99,80 (23) Allowed 6,45 0,8875 (16) 0,0963 (14) 0,0154 (5) ɛ 0,1 821,8 (5) <0,0003 2nd Forbidden >11,1 ɛ 0,0 836,2 (5) <0,00035 Unique 2nd Forbidden >12,9 2.2 Gamma Transitions and Internal Conversion Coefficients P γ+ce Multipolarity α K α L α M α T (%) γ 1,0(Fe) 14,41295 (31) 87,67 (15) M1+0,0005%E2 7,65 (11) 0,787 (11) 0,1082 (16) 8,55 (12) γ 2,1(Fe) 122,06079 (42) 87,51 (15) M1+1,37%E2 0,0212 (3) 0,00211 (3) 0, (5) 0,0236 (4) γ 2,0(Fe) 136,47374 (29) 12,30 (17) E2 0,1331 (19) 0,01371 (20) 0,00187 (3) 0,1487 (21) γ 3,2(Fe) 230,27 (3) 0,0004 (4) M1+0,04%E2 0,00375 (6) 0, (5) 0, (7) 0,00416 (6) γ 4,3(Fe) 339,67 (3) 0,00381 (40) M1+0,68%E2 0, (21) 0, (21) 0, (3) 0, (24) γ 3,1(Fe) 352,34 (2) 0,0032 (4) M1+0,06%E2 0, (19) 0, (19) 0, (3) 0, (22) γ 3,0(Fe) 366,74 (3) 0,0013 (4) M1+16,84%E2 0,00160 (8) 0, (8) 0, (10) 0,00178 (9) KRI / V.P. Chechev, N.K. Kuzmenko 1 07/07/2014 1/3/2017

2 P γ+ce Multipolarity α K α L α M α T (%) γ 4,2(Fe) 569,94 (4) 0,015 (2) M1+0,93%E2 0, (7) 0, (7) 0, (9) 0, (8) γ 4,1(Fe) 692,01 (2) 0,159 (6) M1+17,78%E2 0, (5) 0, (5) 0, (7) 0, (6) γ 4,0(Fe) 706,42 (2) 0,0050 (5) E2 0, (6) 0, (6) 0, (8) 0, (7) 3 Atomic Data 3.1 Fe ω K : 0,355 (4) ω L : 0,0060 (6) n KL : 1,447 (4) X Radiations Relative probability X K Kα 2 6, ,07 Kα 1 6, } Kβ 1 7,05804 Kβ 20, ,1083 L Ll 0,617 Lα 0,7075 0,7084 Lη 0,6306 Lβ 0,7148 0,7938 Lγ 0, , Auger Electrons Relative probability Auger K KLL 5,370 5, KLX 6,158 6,400 27,4 KXY 6,926 7,105 1,87 Auger L 0,5223 0,8421 KRI / V.P. Chechev, N.K. Kuzmenko 2 07/07/2014 1/3/2017

3 4 Electron Emissions Electrons e AL (Fe) 0,5223 0, ,6 (16) e AK (Fe) KLL 5,370 5,645 KLX 6,158 6,400 KXY 6,926 7, ,6 (11) ec 1,0 K (Fe) 7,30095 (31) 70,2 (14) ec 1,0 T (Fe) 7, , ,5 (15) ec 1,0 L (Fe) 13, ,7048 7,22 (14) ec 1,0 M (Fe) 14, ,4094 0,993 (20) ec 1,0 N (Fe) 14, ,4126 0,0431 (9) ec 2,1 K (Fe) 114,94879 (42) 1,812 (26) ec 2,1 T (Fe) 114, ,0604 2,018 (34) ec 2,1 L (Fe) 121, ,3527 0,1804 (26) ec 2,1 M (Fe) 121, ,02 0,02479 (43) ec 2,0 K (Fe) 129,36174 (29) 1,426 (29) ec 2,0 T (Fe) 129, ,4733 1,593 (32) ec 2,0 L (Fe) 135, ,7656 0,1468 (30) ec 2,0 M (Fe) 136, ,4701 0,02003 (43) 5 Photon Emissions 5.1 XRay Emissions Photons XL (Fe) 0,617 0,7938 1,30 (4) } XKα 2 (Fe) 6, ,12 (26) Kα XKα 1 (Fe) 6, ,5 (5) } XKβ 1 (Fe) 7, ,93 (13) K β XKβ 1 5 (Fe) 7, Gamma Emissions Photons γ 1,0 (Fe) 14,41295 (31) 9,18 (12) KRI / V.P. Chechev, N.K. Kuzmenko 3 07/07/2014 1/3/2017

4 Photons γ 2,1 (Fe) 122,06065 (12) 85,49 (14) γ 2,0 (Fe) 136,47356 (29) 10,71 (15) γ 3,2 (Fe) 230,27 (3) 0,0004 (4) γ 4,3 (Fe) 339,67 (3) 0,0038 (4) γ 3,1 (Fe) 352,34 (2) 0,0032 (4) γ 3,0 (Fe) 366,74 (3) 0,0013 (4) γ 4,2 (Fe) 569,94 (4) 0,015 (2) γ 4,1 (Fe) 692,01 (2) 0,159 (6) γ 4,0 (Fe) 706,415 (20) 0,0050 (5) 6 Main Production Modes { Ni 60(p,α)Co Possible impurities: Co 56, Co 58 { Ni 58(p,2p)Co Possible impurities: Co 56, Co 58 { Fe 56(d,n)Co Possible impurities: Co 56, Co 58 7 References J.M.Cork, M.K.Brice, L.C.Schmid. Phys. Rev. 99 (1955) 703 (Relative conversion electron intensities) A.T.G.Ferguson, M.A.Grace, J.O.Newton. Nucl. Phys. 17 (1960) 9 M.A.Clark. Report AECL1337, 40 (1961) R.E.Holland, F.J.Lynch. Phys. Rev. 121 (1961) 1464 G.Moreau, G.Ambrosino. Comp. Rend. Acad. Sci. (Paris) 261 (1965) 5438 (Experimental ICC) S.C.Anspach, L.M.Cavallo, S.B.Garfinkel, J.M.R.Hutchinson, C.N.Smith. Report NP15663 (1965) O.C.Kistner, A.W.Sunyar. Phys. Rev. 139 (1965) B295 (Experimental ICC, gamma ray energies and relative emission probabilities, Halflife for 136 kev level) J.M.Mathiesen, J.P.Hurley. Nucl. Phys. 72 (1965) 475 M.Eckhause, R.J.Harris Jr., W.B.Shuler, R.E.Welsh. Proc. Phys. Soc. (London) 89 (1966) 187 E.H.Spejewski. Nucl. Phys. 82 (1966) 481 (Experimental ICC and gamma ray energies) D.C.Hall, R.G.Albridge. Nucl. Phys. A91 (1967) 495 (Experimental ICC) J.A.Bearden. Rev. Mod. Phys. 39 (1967) 78 (14.413keV gamma ray energy) W.Rubinson, K.P.Gopinathan. Phys. Rev. 170 (1968) 969 (Experimental ICC, PK and PXK values) H.E.Bosch, M.A.Fariolli, N.Martin, M.C.Simon. Nucl. Instrum. Methods 73 (1969) 323 (Experimental PK values) KRI / V.P. Chechev, N.K. Kuzmenko 4 07/07/2014 1/3/2017

5 C.Hohenemser, R.Reno, H.C.Benski, J.Lehr. Phys. Rev. 184 (1969) 298 E.Jaeschke, W.Reichardt, G.Ischenko, D.Frosch, B.Huber, E.Rinsdorfn. Nucl. Instrum. Methods 71 (1969) 29 R.C.Greenwood, R.G.Helmer, R.J.Gehrke. Nucl. Instrum. Methods 77 (1970) 141 D.P.Johnson. Phys. Rev. B1 (1970) 3551 (Experimental ICC) F.T.Porter, M.S.Freedman. Phys. Rev. C3 (1971) 2285 (Relative conversion electron intensities) J.Konijn, E.W.A.Lingeman. Nucl. Instrum. Methods 94 (1971) 389 (Gamma ray energies and emission probabilities) J.F.Emery, S.A.Reynolds, E.I.Wyatt, G.I.Gleason. Nucl. Sci. Eng. 48 (1972) 319 R.A.Fox, W.D.Hamilton, M.J.Holmes. Phys. Rev. C5 (1972) 853 U.Heim, O.W.B.Schult. Z. Naturforsch. 27a (1972) 1861 K.S.Krane, W.A.Steyert. Phys. Rev. C6 (1972) 2268 F.Lagoutine, J.Legrand, C.Perrot, J.P.Brethon, J.Morel. Int. J. Appl. Radiat. Isotop. 23 (1972) 219 A.Mukerji, Lee Chin. Proc. of the Int. Conf., Apr 1722, 1972, Conf720404, USAECTech.l Inform. Center, Oak Ridge, Tenn. (1973) (Experimental PK and PXK values) E.Schoeters, R.E.Silverans, L.Vanneste. Z. Physik 260 (1973) 337 K.G.Tirsell, L.G.Multhauf, S.Raman. Phys. Rev. C10 (1974) 785 R.L.Heath. GammaRay Spectrum Catalogue, Report ANCR10002 (1974) E.J.Cohen, A.J.Becker, N.K.Cheung, H.E.Henrikson. Hyperfine Interact. 1 (1975) 193 I.M.Band, M.B.Trzhaskovskaya, M.A.Listengarten. At. Data Nucl. Data Tables 18 (1976) 433 (Theoretical ICC) G.I.Borchert. Z. Naturforsch. 31a (1976) 387 C.Vylov. Report JINR R610416, Dubna (1977) (Experimental PXK and Pγ (14.4 kev) values) B.A.Alikov, Ya.Babryshchuk, G.I.Lizurei, K.M.Muminov, T.M.Muminov, Yu.S.Salikhbaev, R.R.Usmanov. Report JINRP , Dubna (1978) K.S.Krane. At. Data Nucl. Data Tables 22 (1978) 269 U.Schötzig, K.Debertin, K.F.Walz. Nucl. Instrum. Methods 169 (1980) 43 R.Vennink, J.Kopecky, P.M.Endt, P.W.M.Glaudemans. Nucl. Phys. A344 (1980) 421 H.Houtermans, O.Milosevic, F.Reichel. Int. J. Appl. Radiat. Isotop. 31 (1980) 153 R.Vaninbroukx, G.Grosse, W.Zehner. Int. J. Appl. Radiat. Isotop. 32 (1981) 589 A.Grutter. Int. J. Appl. Radiat. Isotop. 33 (1982) 533 K.F.Walz, K.Debertin, H.Schrader. Int. J. Appl. Radiat. Isotop. 34 (1983) 1191 H.H.Hansen. European App. Res. Rept. Nucl. Sci. Technol. 6 4 (1985) 777 (Compilation of experimental ICC) KRI / V.P. Chechev, N.K. Kuzmenko 5 07/07/2014 1/3/2017

6 K.Debertin, U.Schötzig. Informal IAEA CRP paper GS/55 (1989); quoted in IAEATECDOC619 (1991) (1989) (Experimental KX and 14.4 kev gammaray absolute emission probabilities) K.Singh, T.S.Gill, K.Singh. Appl. Radiat. Isot. 41 (1990) 333 (Experimental PK values) M.P.Unterweger, D.D.Hoppes, F.J.Schima. Nucl. Instrum. Methods A312 (1992) 349 U.Schötzig, H.Schrader, K.Debertin. Proc. Inter. Conf. Nuclear Data for Science and Technology, Jülich, Germany (1992) 562 (Experimental 14.4 kev gammaray emission probabilities) D.Arnold, G.Ulm. Nucl. Instrum. Methods Phys. Res. A339 (1994) 43 (Experimental XKα absolute emission probability) I.Ahmad, K.E.Rehm, E.P.Kanter, W.Kutschera, W.R.Phillips, A.R.Barnett. Phys. Rev. C52 (1995) 2240 R.Ya.Metskhvarishvili, Z.N.Miminoshvili, M.A.Elizbarashvili, L.V.Nekrasova, I.R.Metskhvarishvili, N.G.Khazaradze, N.M.Marchilashvili, I.V.Zhorzholiani. Yad. Fiz. 59, No 5 (1996)773; Phys. Atomic Nuclei 59 (1996) 737 (Relative conversion electron intensities and experimental ICC) E.Schönfeld, H.Janssen. Nucl. Instrum. Methods Phys. Res. A369 (1996) 527 (Atomic data) A.Kovalik, M.Rysavy, V.M.Gorozhankin, Ts.Vylov, D.V.Filosofov, M.A.Mahmoud, A.Minkova, N.Coursol, P.Cassette, Ch.Briancon. Program and Thesis, Proc. 47th Ann. Conf. on Nucl. Spectrosc. Struct. At. Nuclei, Obninsk, (1997) 277 (Relative low energy electron emission probabilities) M.C.Lépy, M.M.Bé, J.Plagnard. CAARI 96 Conference Proceedings AIP Press (1997) 1067 (Experimental Kβ/Kα) R.H.Martin, K.I.W.Burns, J.G.V.Taylor. Nucl. Instrum. Methods Phys. Res. A390 (1997) 267 M.M.Bé, M.C.Lépy, J.Plagnard, B.Duchemin. Appl. Radiat. Isot. 49 (1998) 1367 (Experimental Kβ/Kα) M.R.Bhat. Nucl. Data Sheets 85 (1998) 415 (Mixing ratios E2/M1 for gamma transitions; halflives for the excited levels) E.Schönfeld. Appl. Radiat. Isot. 49 (1998) 1353 (Fractional electron capture probabilities PK, PL, PM) R.G.Helmer, C.van der Leun. Nucl. Instrum. Methods Phys. Res. A450 (2000) 35 I.M.Band, M.B.Trzhaskovskaya, C.W.Nestor Jr., P.O.Tikkanen, S.Raman. At. Data Nucl. Data Tables 81 (2002) 1 (Theoretical ICC) M.M.Bé, V.Chisté, C.Dulieu, E.Browne, V.Chechev, N.Kuzmenko, R.Helmer, A.Nichols, E.Shönfeld, R.Dersch. Table of Radionuclides (Vol. 1 A = 1 to 150), Bureau International des Poids et Mesures (2004) 83 (Co decay data evaluation) V.A.Morozov, N.V.Morozova, T.Badica, Gh.CataDanil, D.Ghita, I.V.Popescu. Nucl. Instrum. Methods Phys. Res. A566 (2006) 448 (Halflives for the excited levels of Fe) T.Kibédi, T.W.Burrows, M.B.Trzhaskovskaya, P.M.Davidson, C.W.Nestor Jr. Nucl. Instrum. Methods Phys. Res. A589 (2008) 202 (Theoretical ICC) C.J. da Silva, A.Iwahara, D.S.Moreira, J.U.Delgado, R.S.Gomes. Appl. Radiat. Isot. 70 (2012) 1924 M.Wang, G.Audi, A.H.Wapstra, F.G.Kondev, M.MacCormick, X.Xu, B.Pfeiffer. Chin. Phys. C36 (2012) 1603 (Q value) R.Fitzgerald. J. Res. Natl. Inst. Stand. Technol. 117 (2012) 80 M.P.Unterweger, R.Fitzgerald. Appl. Radiat. Isot. 87 (2014) 92 KRI / V.P. Chechev, N.K. Kuzmenko 6 07/07/2014 1/3/2017

7 LNELNHB/CEA Table de Radionucléides Co Emission intensities per 100 disintegrations 0 Co /2 ; 0 271,81 (4) d 4,1 ps 4 8 0,003 0,015 0,159 0,005 5/2 ; 706,42 0,183 10,5 ps ,00 0,00 0,00 3/2 ; 366,74 0,002 8,6 ns 2 8 5,49 1 0,71 5/2 ; 136, ,8 98,0 ns Stable 1 0 9,18 Fe Q = 836,2 kev % = 100 3/2 ; 14, /2 ; 0 0,0003 0,00035 KRI / V.P. Chechev, N.K. Kuzmenko Scheme page : 1/1 07/07/ /09/2014

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