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 In- disintegrates by > 99.99% electron capture via the excited level of in Cd- and by < 0.01% electron capture via the isomer level in Cd- (T 1/2 = 48.5 min) at Transitions to the ground state and the excited level of in Cd- have not been observed. L indium se désintègre par capture électronique (> 99,99%) vers le niveau excité de 416 et vers le niveau excité de 396 et de 48,5 min de période du cadmium. Aucune transition vers le niveau de 245 et le niveau fondamental n a été observée. 2 Nuclear Data T 1/2 ( In ) : 2,8049 (4) d Q ( In ) : 861,8 (46) 2.1 Electron Capture Transitions Probability Nature lg ft P K P L P M 100 ɛ 0,3 445 (5) 99,995 (5) Allowed 5 0,8518 (2) 0,11835 (13) 0,02989 (4) ɛ 0,2 466 (5) 0,005 (5) 1st Forbidden 9 0,8524 (2) 0,1179 (2) 0,02975 (4) 2.2 Gamma Transitions and Internal Conversion Coefficients P γce Multipolarity α K α L α M α T 100 γ 2,1(Cd) 150,81 (3) 0,005 (5) E3 1,45 (3) 0,673 (14) 0,137 (3) 2,28 (5) γ 3,1(Cd) 171,28 (3) 99,995 (5) M1 2 % E2 0,0897 (22) 0,0113 (3) 0,00217 (5) 0,1036 (24) γ 1,0(Cd) 245,35 (4) 100 E2 0,0524 (10) 0,00818 (16) 0,00159 (3) 0,0625 (7) KRI /V.P. Chechev 1 29/09/ /4/2006

2 3 Atomic Data 3.1 Cd ω K : 0,842 (4) ω L : 0,0632 (16) n KL : 0,953 (4) X Radiations Relative probability K Kα 2 22, ,17 Kα 1 23, Kβ 3 26,0615 } Kβ 1 26,0958 } Kβ 5 26,304 } 27,9 Kβ 2 26,644 } Kβ 4 26,7106 } 5,1 L Ll 2,77 Lα 3,127 3,134 Lη 2,957 Lβ 3,316 3,528 Lγ 3,718 3, Auger Electrons Relative probability Auger K KLL 18,675 19, KLX 21,923 23, KXY 25,171 26,028 4,63 Auger L 3,404 3,804 KRI /V.P. Chechev 2 29/09/ /4/2006

3 4 Electron Emissions Electrons per 100 disint. e AL (Cd) 3,404-3, ,5 (8) e AK (Cd) 15,5 (4) KLL 18,675-19,636 } KLX 21,923-23,172 } KXY 25,171-26,028 } ec 3,1 K (Cd) 144,57 (3) 8,13 (20) ec 3,1 L (Cd) 167,3-167,7 1,02 (3) ec 3,1 M (Cd) 170,51-170,88 0,197 (5) ec 1,0 K (Cd) 218,64 (4) 4,93 (10) ec 1,0 L (Cd) 241,33-241,81 0,770 (15) ec 1,0 M (Cd) 244,58-244,95 0,150 (3) 5 Photon Emissions 5.1 X-Ray Emissions Photons per 100 disint. XL (Cd) 2,77 3,95 6,78 (14) XKα 2 (Cd) 22, ,65 (18) } Kα XKα 1 (Cd) 23, ,47 (26) } XKβ 3 (Cd) 26,0615 } XKβ 1 (Cd) 26,0958 } 12,40 (14) K β 1 XKβ 5 (Cd) 26,304 } XKβ 2 (Cd) 26,644 } XKβ 4 (Cd) 26,7106 } 2,26 (7) K β Gamma Emissions Photons per 100 disint. γ 2,1 (Cd) 150,81 (3) 0,0015 (15) γ 3,1 (Cd) 171,28 (3) 90,61 (20) γ 1,0 (Cd) 245,35 (4) 94,12 (6) KRI /V.P. Chechev 3 29/09/ /4/2006

4 6 Main Production Modes { Cd 112(p,2n)In Possible impurities : none { Cd (p,n)in Possible impurities : In 114m 7 References - M. L. Wiedenbeck. Phys. Rev. 67 (1945) 92 (Half-life(Cd-m).) - N. Hole. Arkiv. Mat. Astron. Fysik 36A (1948) N09 (Half-life(Cd-m).) - A. S. Helmholz, R. W. Hayward, C. L. McGinnis. Phys. Rev. 75 (1949) 1469A (Half-life(Cd-m), Half-life(In-).) - C. L. McGinnis. Phys. Rev. 81 (1951) 734 (Half-life(Cd-m), Electron and gamma-ray energies and probabilities.) - R. H. Steffen. Phys. Rev. 103 (1956) 116 (Mixing Ratio (E2/M1) of gamma (3,1) transition.) - A. Maier. Helv. Phys. Acta 30 (1957) P. Sparrman, A. Marrelius, T. Sundstrom, H. Petterson. Z. Phys. B192 (1966) 439 (Gamma-ray energies and emission probabilities, ICC.) - J. A. Bearden. Rev. Mod. Phys. 39 (1967) 78 (X-ray energies.) - P. Bornemisza-Pauspertl, J. Karolyi, G. Peto. ATOMKI Kozlemen 10 (1968) 112 (Half-life(Cd-m).) - H. Liskien. Nucl. Phys. A118 (1968) F. Smend, W. Weirauch, W.-D. Schmidt-Ott. Z. Phys. 214 (1968) S. E. Gureev, T. Islamov, V. S. Usachenko. Izv. Akad. Nauk. SSSR. Ser. Fiz.- Uzb. Mat. 1 (1972) 87 - R. A. Meyer, J. H. Landrum. Bull. Amer. Phys. Soc. 17 (1972) 906 (Electron capture probability(0,2).) - J. F. Emery et al. Nucl. Sci. Eng. 48 (1972) C. Budz-Jorgensen. Phys. Rev. B8 (1973) 5411 (Mixing Ratio (E2/M1) of gamma (3,1) transition.) - B. P. Pathak, S. K. Mukherjee. Radiochem. Radioanal. Letters 15 (1973) 187 (T ICC of gamma (2,1) transition.) - W. Kreische, W. Lampert. Z. Phys. 266 (1974) 51 (Mixing Ratio (E2/M1) of gamma (3,1) transition.) - R. L. Heath. ANCR (1974) (Gamma-ray energies and emission probabilities.) - G. A. Shevelev, A. T. Troytskaya, V. M. Kartashov. Izv. Akad. Nauk. SSSR. Ser. Fiz. 39 (1975) 2038 (Gamma-ray energies and emission probabilities, ICC.) - F. P. Larkins. At. Data Nucl. Data Tables 20 (1977) 313 (Auger electrons energies.) - F. Rösel, H. M. Fries, K. Alder, H. C. Pauli. At. Data Nucl. Data Tables 21 (1978) 92 (Theoretical ICC.) - F. Lagoutine, J. Legrand, C. Bac. Int. J. Appl. Radiat. Isotop. 29 (1978) H. Houtermans, O. Milosevic, F. Reichel. Int. J. Appl. Radiat. Isotop. 31 (1980) 153 KRI /V.P. Chechev 4 29/09/ /4/2006

5 - D. D. Hoppes et al.. NBS-Special publication 626 (1982) 85 - K. F. Walz, K. Debertin, H. Schrader. Int. J. Appl. Radiat. Isotop. 34 (1983) Y. Kawada, Y. Hino. Nucl. Instrum. Methods A241 (1985) 199 (T ICC.) - A. R. Rutledge, L. V. Smith, J. S. Merritt. Int. J. Appl. Radiat. Isotop. 37 (1986) Zs. Nemeth, L. Lakosi, I. Pavlicsek, A. Veres. Int. J. Appl. Radiat. Isotop. 38 (1987) 63 (Half-life(Cd-m).) - M. P. Unterweger, D. D. Hoppes, F. J. Schima. Nucl. Instrum. Methods Phys. Res. A312 (1992) S.F. Kafala, T.D. MacMahon, P.W. Gray. Nucl. Instrum. Methods Phys. Res. A339 (1994) 151 (Evaluation technique.) - E. Schönfeld, H. Janssen. Nucl. Instrum. Methods Phys. Res. A369 (1996) 527 (Atomic data.) - Xiao-qiong Wen et al.. Nucl. Instrum. Methods Phys. Res. A379 (1997) 478 (Half-life(Cd-m).) - B. Singh, J.L. Rodriguez, S.S. Wong, J.K. Tuli. Nucl. Data Sheets 84 (1998) 487 (lg ft.) - M.-M. Bé, B. Duchemin, J. Lame, C. Morillon, F. Piton, E. Browne, V. Chechev, R. Helmer, E. Schönfeld. Table de Radionucleide, CEA-ISBN (1999) (In- decay data evaluation ) - J. Blachot. Nucl. Data Sheets 100 (2003) 179 (Cd- level scheme and energies.) - G. Audi, A. N. Wapstra. Nucl. Phys. A729 (2003) 337 (Q.) - H. Schrader. Appl. Rad. Isotopes 60 (2004) E.A. Yakushev et al.. Appl. Rad. Isotopes 62 (2005) 451 (Auger electrons.) - S. Raman, M. Ertugrul, C.W. Nestor Jr., M.B. Trzhaskovskaya. At. Data. Nucl. Data Tables 92 (2006) 207 (Theoretical ICC.) KRI /V.P. Chechev 5 29/09/ /4/2006

6 LNE-LNHB/CEA - Table de Radionucléides In γ Emission intensities per 100 disintegrations 0 ε In /2 ; 0 2,8049 (4) d 48,50 min ,6 0, /2 ; 416,6 11/2 - ; 396,15 99,995 0, ,1 5/2 ; 245,4 Stable 0 Cd Q = 861,8 % ε = 100 1/2 ; 0 KRI / V.P. Chechev Scheme page : 1/1 29/09/ /04/2006

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