JENDL-5, 2021-12-10 0 0 0 0 2.000000+4 3.973568+1 -1 0 6 12000 1451 1 0.000000+0 0.000000+0 0 0 0 62000 1451 2 0.000000+0 1.00000+11 0 0 6 52000 1451 3 0.000000+0 0.000000+0 0 0 71 22000 1451 4 20-Ca- 0 NDS,IAEA Eval-Dec17 D.E.Cullen 2000 1451 5 NDS-IAEA-224 DIST-FEB18 2000 1451 6 ----JENDL-5 MATERIAL 2000 2000 1451 7 -----ATOMIC RELAXATION DATA 2000 1451 8 ------ENDF-6 FORMAT 2000 1451 9 2000 1451 10 ==================================================================2000 1451 11 This file is imported from ENDF-B/VIII.0 (JENDL5). 2000 1451 12 2000 1451 13 ==================================================================2000 1451 14 The Livermore Evaluated Atomic Data Library (EADL) in the 2000 1451 15 ENDF-6 Format. Translated from the Livermore ENDL format 2000 1451 16 to the ENDF-6 Format. 2000 1451 17 ==================================================================2000 1451 18 Contents 2000 1451 19 ==================================================================2000 1451 20 MF/MT Description 2000 1451 21 ==================================================================2000 1451 22 28/533 Atomic Relaxation Data for Electrons and Photons 2000 1451 23 ==================================================================2000 1451 24 Warning 2000 1451 25 ==================================================================2000 1451 26 MF/MT combinations used to define ALL electron interaction data 2000 1451 27 are newly defined MF/MT numbers for ENDF/B-VI that did not exist2000 1451 28 in earlier versions of ENDF/B. 2000 1451 29 ==================================================================2000 1451 30 Definition of Data 2000 1451 31 ==================================================================2000 1451 32 Atomic Relaxation Data for Electrons and Photons 2000 1451 33 ==================================================================2000 1451 34 1) An atom can be ionized by a photon or an electron interaction. 2000 1451 35 2) The atomic relaxation data included here describes how a 2000 1451 36 singly ionized atom returns to neutrality, by emitting photons 2000 1451 37 (x-rays) and/or electrons (Auger, Coster-Kronig). 2000 1451 38 3) Data is given to define the transition probabilities between 2000 1451 39 subshells for radiative (x-ray emission) and non-radiative 2000 1451 40 (Auger, Coster-Kronig) transitions. 2000 1451 41 4) The complete spectrum of emitted photons and electrons can be 2000 1451 42 calculated using the data included here, e.g., see ref. 2, 2000 1451 43 below, for am example of a computer code that analytically 2000 1451 44 calculates these spectra. 2000 1451 45 ==================================================================2000 1451 46 References 2000 1451 47 ==================================================================2000 1451 48 1) S.T. Perkins, D.E. Cullen, etal., "Tables and Graphs of Atomic 2000 1451 49 Subshell and Relaxation Data Derived from the LLNL Evaluated 2000 1451 50 Atomic Data Library (EADL), Z = 1 - 100", UCRL-50400, Vol. 30, 2000 1451 51 Lawrence Livermore National Laboratory (1991). 2000 1451 52 2) D.E. Cullen "Program RELAX: A Code Designed to Calculate X-Ray 2000 1451 53 and Electron Emission Spectra as Singly Charged Atoms Relax 2000 1451 54 Back to Neutrality", UCRL-ID-110438, Lawrence Livermore 2000 1451 55 National Laboratory (1992). 2000 1451 56 3) D.E. Cullen "A Survey of Atomic Binding Energies for use 2000 1451 57 in EPICS2017" ,IAEA-NDS-224, (2017), Nuclear Data Section, 2000 1451 58 IAEA, Vienna, Austria 2000 1451 59 2000 1451 60 These are the primary references to the contents of this library2000 1451 61 and they contain a complete list of references to the sources 2000 1451 62 of data used in this library, methods of evaluation, accuracy 2000 1451 63 of the data, etc. 2000 1451 64 ==================================================================2000 1451 65 History 2000 1451 66 ==================================================================2000 1451 67 (1) November, 1991 - Initial release in the ENDL format. 2000 1451 68 (2) November, 2001 - Initial release in the ENDF-6 format. 2000 1451 69 (3) September,2014 - Insure Standard C, C++, FORTRAN Format 2000 1451 70 (4) September,2014 - Updated based on recently publshed data 2000 1451 71 (5) September,2017 - New Binding Energies (see: ref.3) 2000 1451 72 Same Transition Probabilities 2000 1451 73 ==================================================================2000 1451 74 **************** Program DICTIN (VERSION 2017-1) ****************2000 1451 75 1 451 77 02000 1451 76 28 533 95 02000 1451 77 2000 1 0 0 2000 0 0 0 2.000000+4 3.973568+1 0 0 8 0200028533 1 1.000000+0 0.000000+0 0 0 192 31200028533 2 4.041000+3 2.000000+0 0.000000+0 0.000000+0 0.000000+0 0.000000+0200028533 3 3.000000+0 0.000000+0 3.655960+3 4.871960-2 0.000000+0 0.000000+0200028533 4 4.000000+0 0.000000+0 3.659800+3 9.613230-2 0.000000+0 0.000000+0200028533 5 6.000000+0 0.000000+0 3.980990+3 5.177760-3 0.000000+0 0.000000+0200028533 6 7.000000+0 0.000000+0 3.981400+3 1.024890-2 0.000000+0 0.000000+0200028533 7 2.000000+0 2.000000+0 3.146780+3 5.634850-2 0.000000+0 0.000000+0200028533 8 2.000000+0 3.000000+0 3.221850+3 6.205310-2 0.000000+0 0.000000+0200028533 9 2.000000+0 4.000000+0 3.225690+3 1.177620-1 0.000000+0 0.000000+0200028533 10 2.000000+0 5.000000+0 3.527730+3 1.428240-2 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