output of sort.f90 using test.inp note as this is a monte Carlo - your numbers will differ from these with pi-lambda_bar = 1 Jmax = 100 diffuseness = 0 evtfile=test.evt Ni+Sn fma date of gemini run=20070820 number of events per l-wave= 500.000*(2*L+1) Compund nucleus:- Zcn= 38 Acn= 90 Excitation energy = 180.00 MeV minimum and maximum L waves simulated by Gemini 0 0 NO Weighting Angles and Velocities of all fragments calculated No fission delay All asymmetric divisions possible Sierks fission barrier scaled by 1.00 Fineman's Temp dependent level-density parameter, kappa= 1.00 Transmission coeff. from IWBC spherical transmission coef ,ratio= 0.00 Standard transitional state formulism Semi-classical treatment of spin projection and emission angles evaporation Z=0,1,2,3,4 experimental masses with shell fade-out used Some real exotic fragments evaporated af/an= 1.000 barrier scaled by 1.000000 E2 strength= 50.00W.u. E1 strength= 0.10W.u. pi-lambda-bar-2= 1.0000 cross section calculated for lmax= 100.0 diffuseness= 0.0000 h_bar lmax= 0h-bar Events= 500 Maximum N_frag= 16 Fusion Xsection= 1.00mb Z sigma(Z) st error N events 1 1.9220000505447 0.0620000027120 961. 2 0.8680000305176 0.0416653342545 434. 3 0.0200000014156 0.0063245557249 10. 5 0.0060000000522 0.0034641018137 3. 6 0.0040000001900 0.0028284273576 2. 7 0.0060000000522 0.0034641018137 3. 9 0.0020000000950 0.0020000000950 1. 10 0.0040000001900 0.0028284273576 2. 13 0.0040000001900 0.0028284273576 2. 14 0.0020000000950 0.0020000000950 1. 20 0.0020000000950 0.0020000000950 1. 21 0.0020000000950 0.0020000000950 1. 25 0.0040000001900 0.0028284273576 2. 27 0.0060000000522 0.0034641018137 3. 28 0.0060000000522 0.0034641018137 3. 29 0.0100000007078 0.0044721360318 5. 30 0.0120000001043 0.0048989797942 6. 31 0.0300000011921 0.0077459672466 15. 32 0.0780000016093 0.0124899968505 39. 33 0.1600000113249 0.0178885441273 80. 34 0.2400000095367 0.0219089034945 120. 35 0.2220000177622 0.0210713092238 111. 36 0.1860000044107 0.0192873030901 93. 37 0.0420000031590 0.0091651519760 21. Calssical Evaporation Residues Z sigma(Z) st error N events 29 0.002000 0.002000 1.0000 31 0.006000 0.003464 3.0000 32 0.018000 0.006000 9.0000 33 0.076000 0.012329 38.0000 34 0.158000 0.017776 79.0000 35 0.182000 0.019079 91.0000 36 0.184000 0.019183 92.0000 37 0.042000 0.009165 21.0000 A sigma(A) st error N events 1 1.2240000963211 0.0494772680104 612. 2 0.4580000340939 0.0302654933184 229. 3 0.2700000107288 0.0232379008085 135. 4 0.8260000348091 0.0406448058784 413. 6 0.0180000010878 0.0060000000522 9. 7 0.0080000003800 0.0040000001900 4. 8 0.0060000000522 0.0034641018137 3. 9 0.0020000000950 0.0020000000950 1. 10 0.0020000000950 0.0020000000950 1. 11 0.0020000000950 0.0020000000950 1. 12 0.0020000000950 0.0020000000950 1. 13 0.0020000000950 0.0020000000950 1. 14 0.0020000000950 0.0020000000950 1. 15 0.0020000000950 0.0020000000950 1. 16 0.0020000000950 0.0020000000950 1. 19 0.0020000000950 0.0020000000950 1. 20 0.0020000000950 0.0020000000950 1. 22 0.0020000000950 0.0020000000950 1. 27 0.0020000000950 0.0020000000950 1. 31 0.0040000001900 0.0028284273576 2. 45 0.0020000000950 0.0020000000950 1. 46 0.0020000000950 0.0020000000950 1. 54 0.0040000001900 0.0028284273576 2. 61 0.0060000000522 0.0034641018137 3. 63 0.0040000001900 0.0028284273576 2. 64 0.0040000001900 0.0028284273576 2. 66 0.0040000001900 0.0028284273576 2. 67 0.0060000000522 0.0034641018137 3. 68 0.0040000001900 0.0028284273576 2. 69 0.0120000001043 0.0048989797942 6. 70 0.0220000017434 0.0066332500428 11. 71 0.0220000017434 0.0066332500428 11. 72 0.0560000017285 0.0105830058455 28. 73 0.0780000016093 0.0124899968505 39. 74 0.0820000022650 0.0128062488511 41. 75 0.1140000075102 0.0150996698067 57. 76 0.1620000004768 0.0180000010878 81. 77 0.0960000008345 0.0138564072549 48. 78 0.1520000100136 0.0174355972558 76. 79 0.1080000028014 0.0146969389170 54. 80 0.0460000038147 0.0095916632563 23. 81 0.0140000004321 0.0052915029228 7. For coincidences between the 2 heaviest fragments. Charge lost due to evaporation before and after scission as a function of the Z of one fragment Z sigma(Zloss) 5 3.667 2.055 6 2.500 0.500 7 3.000 0.000 9 2.000 0.000 10 2.000 1.000 Average c-m velocity of each Z-species Z sig(Vcm) 3 2.20 0.21 5 2.07 0.13 6 1.85 0.17 7 1.66 0.02 9 1.44 0.00 10 1.39 0.16 13 1.33 0.16 14 1.00 0.00 20 0.88 0.00 21 0.80 0.00 25 0.71 0.00 27 0.51 0.11 28 0.37 0.10 29 0.38 0.10 30 0.32 0.06 31 0.23 0.07 32 0.23 0.08 33 0.21 0.08 34 0.19 0.07 35 0.17 0.06 36 0.14 0.05 37 0.13 0.04 Cross sections for heavy particle Multiplicities Multiplicity xsection mb 1 0.9520E+00 2 0.4800E-01 3 0.0000E+00 4 0.0000E+00 5 0.0000E+00 6 0.0000E+00 7 0.0000E+00 8 0.0000E+00 9 0.0000E+00 10 0.0000E+00 average multiplicity of IMFs (2