Los Alamos National Laboratory Poisson Superfish Program Automesh written by James H. Billen and Lloyd M. Young The original Poisson Superfish codes were developed by Ron F. Holsinger in collaboration with Klaus Halbach. These programs are provided as a service to the accelerator community by the Los Alamos Accelerator Code Group (LAACG). (c) Copyright 1985-2005, by the Regents of the University of California. This software was produced under U. S. Government contract W-7405-ENG-36 by Los Alamos National Laboratory, which is operated by the University of California for the U. S. Department of Energy. Neither the Government nor the University makes any warranty, express or implied, or assumes any liability or responsibility for its use, or represents that use of this software would not infringe privately owned rights. Unpublished - rights reserved under Copyright Laws of the United States. Program Automesh 7.16 released 5-9-2005 Program file: C:\LANL\AUTOFISH.EXE Problem file: C:\psfish\cwin\BOW.AF 7-12-2005 10:00:56 SF.INI file: C:\LANL\SF.INI 7-08-2005 9:09:06 Problem description: 201 MHz MUCOOL cavity with bowed out windows Coordinates and lengths have dimensions of centimeters. Region data: IREG = 1 MAT = 1 CUR = 0.0 DEN = 0.0 ITRI = 0 [equal weight triangles] IBOUND = 1 [Neumann boundary] IPDIAG = 0 [no extra Automesh diagnostics] DX = 0.2 XMIN = 0.0 XMAX = 23.81233 DY = 0.1732051 [=DX*sin(60)] YMIN = 0.0 YMAX = 60.85 DX1 = 0.2001036 KMAX = 120 DY1 = 0.1733618 LMAX = 352 ITOT = 43188 Memory used for the solution file: 1.555 M Memory used for Automesh setup data: 521.336 K Region 1 boundary points from the PO namelist: Point NT X0 Y0 X Y R THETA A B 1 1 21.00 0.000 2 1 0.000 0.000 3 1 0.000 60.85 4 2 0.000 0.000 60.85 83.50 60.85 60.85 5 2 5.503 48.31 12.23 1.998 12.23 12.23 6 1 18.54 25.61 7 2 25.53 25.85 7.000 -138.0 7.000 7.000 8 2 20.70 21.50 0.5000 -90.00 0.5000 0.5000 9 1 21.00 21.00 10 2 70.81 21.00 49.81 -164.7 49.81 49.81 11 2 -6.188 0.000 30.00 0.000 30.00 30.00 12 1 21.00 0.000 Number of user-supplied fixed points = 12 Fixed points added at line regions = 0 Fixed points added on overlapping regions = 0 Total number of fixed points = 12 Logical path finding for region 1 (includes extra boundary points at intersections of line regions plus points from other user-supplied segments) Point NT X Y R A B Fwd Bkw 2 1 0.000 0.000 106 106 3 1 0.000 60.85 352 352 4 2 6.887 60.46 60.85 60.85 37 37 5 2 17.73 48.73 12.23 12.23 97 97 6 1 18.54 25.61 134 134 7 2 20.33 21.17 7.000 7.000 28 28 8 2 20.70 21.00 0.5000 0.5000 4 4 9 1 21.00 21.00 2 2 10 2 22.76 7.894 49.81 49.81 77 77 11 2 23.81 0.000 30.00 30.00 46 46 12 1 21.00 0.000 15 15 Region 1 mesh points K L X Y 106 1 21.0000000 0.00000000 105 1 20.8000000 0.00000000 104 1 20.6000000 0.00000000 103 1 20.4000000 0.00000000 102 1 20.2000000 0.00000000 101 1 20.0000000 0.00000000 100 1 19.8000000 0.00000000 99 1 19.6000000 0.00000000 98 1 19.4000000 0.00000000 97 1 19.2000000 0.00000000 96 1 19.0000000 0.00000000 95 1 18.8000000 0.00000000 94 1 18.6000000 0.00000000 93 1 18.4000000 0.00000000 92 1 18.2000000 0.00000000 91 1 18.0000000 0.00000000 90 1 17.8000000 0.00000000 89 1 17.6000000 0.00000000 88 1 17.4000000 0.00000000 87 1 17.2000000 0.00000000 86 1 17.0000000 0.00000000 85 1 16.8000000 0.00000000 84 1 16.6000000 0.00000000 83 1 16.4000000 0.00000000 82 1 16.2000000 0.00000000 81 1 16.0000000 0.00000000 80 1 15.8000000 0.00000000 79 1 15.6000000 0.00000000 78 1 15.4000000 0.00000000 77 1 15.2000000 0.00000000 76 1 15.0000000 0.00000000 75 1 14.8000000 0.00000000 74 1 14.6000000 0.00000000 73 1 14.4000000 0.00000000 72 1 14.2000000 0.00000000 71 1 14.0000000 0.00000000 70 1 13.8000000 0.00000000 69 1 13.6000000 0.00000000 68 1 13.4000000 0.00000000 67 1 13.2000000 0.00000000 66 1 13.0000000 0.00000000 65 1 12.8000000 0.00000000 64 1 12.6000000 0.00000000 63 1 12.4000000 0.00000000 62 1 12.2000000 0.00000000 61 1 12.0000000 0.00000000 60 1 11.8000000 0.00000000 59 1 11.6000000 0.00000000 58 1 11.4000000 0.00000000 57 1 11.2000000 0.00000000 56 1 11.0000000 0.00000000 55 1 10.8000000 0.00000000 54 1 10.6000000 0.00000000 53 1 10.4000000 0.00000000 52 1 10.2000000 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281 17.7320812 48.5600988 90 280 17.7381640 48.3861966 90 279 17.7442467 48.2122943 90 278 17.7503294 48.0383920 90 277 17.7564121 47.8644898 90 276 17.7624948 47.6905875 90 275 17.7685776 47.5166852 90 274 17.7746603 47.3427830 90 273 17.7807430 47.1688807 90 272 17.7868257 46.9949784 90 271 17.7929084 46.8210762 90 270 17.7989911 46.6471739 90 269 17.8050739 46.4732717 90 268 17.8111566 46.2993694 90 267 17.8172393 46.1254671 90 266 17.8233220 45.9515649 90 265 17.8294047 45.7776626 90 264 17.8354875 45.6037603 90 263 17.8415702 45.4298581 91 262 17.8476529 45.2559558 91 261 17.8537356 45.0820535 91 260 17.8598183 44.9081513 91 259 17.8659010 44.7342490 91 258 17.8719838 44.5603468 91 257 17.8780665 44.3864445 91 256 17.8841492 44.2125422 91 255 17.8902319 44.0386400 91 254 17.8963146 43.8647377 91 253 17.9023973 43.6908354 91 252 17.9084801 43.5169332 91 251 17.9145628 43.3430309 91 250 17.9206455 43.1691286 91 249 17.9267282 42.9952264 91 248 17.9328109 42.8213241 91 247 17.9388937 42.6474218 91 246 17.9449764 42.4735196 91 245 17.9510591 42.2996173 91 244 17.9571418 42.1257151 91 243 17.9632245 41.9518128 91 242 17.9693072 41.7779105 91 241 17.9753900 41.6040083 91 240 17.9814727 41.4301060 91 239 17.9875554 41.2562037 91 238 17.9936381 41.0823015 91 237 17.9997208 40.9083992 91 236 18.0058036 40.7344969 91 235 18.0118863 40.5605947 91 234 18.0179690 40.3866924 91 233 18.0240517 40.2127902 91 232 18.0301344 40.0388879 91 231 18.0362171 39.8649856 91 230 18.0422999 39.6910834 91 229 18.0483826 39.5171811 91 228 18.0544653 39.3432788 91 227 18.0605480 39.1693766 91 226 18.0666307 38.9954743 91 225 18.0727134 38.8215720 92 224 18.0787962 38.6476698 92 223 18.0848789 38.4737675 92 222 18.0909616 38.2998653 92 221 18.0970443 38.1259630 92 220 18.1031270 37.9520607 92 219 18.1092098 37.7781585 92 218 18.1152925 37.6042562 92 217 18.1213752 37.4303539 92 216 18.1274579 37.2564517 92 215 18.1335406 37.0825494 92 214 18.1396233 36.9086471 92 213 18.1457061 36.7347449 92 212 18.1517888 36.5608426 92 211 18.1578715 36.3869404 92 210 18.1639542 36.2130381 92 209 18.1700369 36.0391358 92 208 18.1761196 35.8652336 92 207 18.1822024 35.6913313 92 206 18.1882851 35.5174290 92 205 18.1943678 35.3435268 92 204 18.2004505 35.1696245 92 203 18.2065332 34.9957222 92 202 18.2126160 34.8218200 92 201 18.2186987 34.6479177 92 200 18.2247814 34.4740155 92 199 18.2308641 34.3001132 92 198 18.2369468 34.1262109 92 197 18.2430295 33.9523087 92 196 18.2491123 33.7784064 92 195 18.2551950 33.6045041 92 194 18.2612777 33.4306019 92 193 18.2673604 33.2566996 92 192 18.2734431 33.0827973 92 191 18.2795259 32.9088951 92 190 18.2856086 32.7349928 92 189 18.2916913 32.5610906 92 188 18.2977740 32.3871883 92 187 18.3038567 32.2132860 93 186 18.3099394 32.0393838 92 185 18.3160222 31.8654815 93 184 18.3221049 31.6915792 92 183 18.3281876 31.5176770 93 182 18.3342703 31.3437747 92 181 18.3403530 31.1698724 93 180 18.3464357 30.9959702 92 179 18.3525185 30.8220679 93 178 18.3586012 30.6481656 92 177 18.3646839 30.4742634 93 176 18.3707666 30.3003611 92 175 18.3768493 30.1264589 93 174 18.3829321 29.9525566 92 173 18.3890148 29.7786543 93 172 18.3950975 29.6047521 92 171 18.4011802 29.4308498 93 170 18.4072629 29.2569475 92 169 18.4133456 29.0830453 93 168 18.4194284 28.9091430 93 167 18.4255111 28.7352407 93 166 18.4315938 28.5613385 93 165 18.4376765 28.3874362 93 164 18.4437592 28.2135340 93 163 18.4498420 28.0396317 93 162 18.4559247 27.8657294 93 161 18.4620074 27.6918272 93 160 18.4680901 27.5179249 93 159 18.4741728 27.3440226 93 158 18.4802555 27.1701204 93 157 18.4863383 26.9962181 93 156 18.4924210 26.8223158 93 155 18.4985037 26.6484136 93 154 18.5045864 26.4745113 93 153 18.5106691 26.3006091 93 152 18.5167518 26.1267068 93 151 18.5228346 25.9528045 93 150 18.5289173 25.7789023 93 149 18.5350000 25.6050000 94 148 18.5433923 25.4280300 93 147 18.5562662 25.2512623 94 146 18.5736218 25.0747824 93 145 18.5954590 24.8986765 94 144 18.6217775 24.7230312 94 143 18.6525771 24.5479337 94 142 18.6878573 24.3734716 94 141 18.7276173 24.1997343 95 140 18.7718560 24.0268117 94 139 18.8205720 23.8547949 95 138 18.8737634 23.6837758 95 137 18.9314278 23.5138482 96 136 18.9935618 23.3451077 96 135 19.0601613 23.1776509 97 134 19.1312219 23.0115754 96 133 19.2067369 22.8469825 97 132 19.2866992 22.6839739 97 131 19.3711002 22.5226534 98 130 19.4599290 22.3631280 98 129 19.5531741 22.2055048 99 128 19.6508201 22.0498958 99 127 19.7528515 21.8964123 100 126 19.8592481 21.7451705 101 126 19.9699881 21.5962876 101 125 20.0850468 21.4498828 102 124 20.2043946 21.3060791 102 123 20.3279993 21.1650008 103 122 20.4307604 21.0781581 104 122 20.5577753 21.0204121 105 122 20.6991806 21.0000000 106 122 21.0000000 21.0000000 105 121 21.0003039 20.8260017 106 120 21.0012156 20.6520050 105 119 21.0027351 20.4780115 106 118 21.0048625 20.3040228 105 117 21.0075976 20.1300404 106 116 21.0109405 19.9560660 106 115 21.0148913 19.7821012 106 114 21.0194498 19.6081476 106 113 21.0246162 19.4342067 106 112 21.0303904 19.2602801 106 111 21.0367723 19.0863695 106 110 21.0437621 18.9124764 106 109 21.0513597 18.7386024 106 108 21.0595651 18.5647492 106 107 21.0683783 18.3909184 106 106 21.0777993 18.2171114 106 105 21.0878281 18.0433300 106 104 21.0984647 17.8695757 106 103 21.1097091 17.6958501 107 102 21.1215613 17.5221549 106 101 21.1340214 17.3484916 107 100 21.1470892 17.1748618 106 99 21.1607648 17.0012672 107 98 21.1750482 16.8277093 106 97 21.1899394 16.6541897 107 96 21.2054384 16.4807101 107 95 21.2215452 16.3072721 107 94 21.2382598 16.1338772 107 93 21.2555822 15.9605271 107 92 21.2735124 15.7872234 107 91 21.2920503 15.6139678 108 90 21.3111961 15.4407617 107 89 21.3309496 15.2676069 108 88 21.3513109 15.0945049 107 87 21.3722799 14.9214574 108 86 21.3938568 14.7484659 108 85 21.4160414 14.5755322 108 84 21.4388338 14.4026578 108 83 21.4622339 14.2298444 108 82 21.4862418 14.0570935 108 81 21.5108574 13.8844069 109 80 21.5360808 13.7117861 108 79 21.5619120 13.5392328 109 78 21.5883508 13.3667486 109 77 21.6153974 13.1943351 109 76 21.6430517 13.0219940 109 75 21.6713137 12.8497269 109 74 21.7001834 12.6775354 109 73 21.7296608 12.5054213 110 72 21.7597460 12.3333860 109 71 21.7904387 12.1614314 110 70 21.8217392 11.9895591 110 69 21.8536473 11.8177706 110 68 21.8861631 11.6460676 110 67 21.9192865 11.4744518 111 66 21.9530175 11.3029249 110 65 21.9873561 11.1314886 111 64 22.0223023 10.9601444 111 63 22.0578561 10.7888940 111 62 22.0940175 10.6177392 111 61 22.1307865 10.4466815 112 60 22.1681629 10.2757227 112 59 22.2061469 10.1048644 112 58 22.2447384 9.93410838 112 57 22.2839374 9.76345622 113 56 22.3237438 9.59290961 112 55 22.3641577 9.42247027 113 54 22.4051790 9.25213989 113 53 22.4468077 9.08192017 113 52 22.4890438 8.91181280 113 51 22.5318872 8.74181946 114 50 22.5753380 8.57194183 114 49 22.6193960 8.40218165 114 48 22.6640613 8.23254064 114 47 22.7093339 8.06302051 115 46 22.7552136 7.89362297 115 45 22.8016716 7.72127423 115 44 22.8470831 7.54871601 115 43 22.8914514 7.37595417 116 42 22.9347764 7.20299371 115 41 22.9770579 7.02983960 116 40 23.0182961 6.85649667 116 39 23.0584907 6.68296983 117 38 23.0976417 6.50926404 116 37 23.1357491 6.33538416 117 36 23.1728128 6.16133500 117 35 23.2088328 5.98712141 117 34 23.2438090 5.81274829 117 33 23.2777414 5.63822047 118 32 23.3106300 5.46354269 117 31 23.3424747 5.28871977 118 30 23.3732754 5.11375653 118 29 23.4030322 4.93865779 118 28 23.4317451 4.76342824 118 27 23.4594140 4.58807266 118 26 23.4860389 4.41259579 118 25 23.5116197 4.23700243 119 24 23.5361565 4.06129728 118 23 23.5596493 3.88548504 119 22 23.5820980 3.70957042 118 21 23.6035026 3.53355816 119 20 23.6238632 3.35745297 119 19 23.6431796 3.18125952 119 18 23.6614519 3.00498247 119 17 23.6786802 2.82862652 119 16 23.6948643 2.65219636 119 15 23.7100043 2.47569665 120 14 23.7241001 2.29913205 119 13 23.7371519 2.12250719 120 12 23.7491595 1.94582675 119 11 23.7601229 1.76909537 120 10 23.7700423 1.59231770 119 9 23.7789175 1.41549838 120 8 23.7867485 1.23864203 119 7 23.7935354 1.06175329 120 6 23.7992782 0.884836795 119 5 23.8039769 0.707897186 120 4 23.8076314 0.530939075 119 3 23.8102417 0.353967090 120 2 23.8118079 0.176985856 120 1 23.8123300 0.00000000 119 1 23.6114493 0.00000000 118 1 23.4105686 0.00000000 117 1 23.2096879 0.00000000 116 1 23.0088071 0.00000000 115 1 22.8079264 0.00000000 114 1 22.6070457 0.00000000 113 1 22.4061650 0.00000000 112 1 22.2052843 0.00000000 111 1 22.0044036 0.00000000 110 1 21.8035229 0.00000000 109 1 21.6026421 0.00000000 108 1 21.4017614 0.00000000 107 1 21.2008807 0.00000000 106 1 21.0000000 0.00000000 Region 1 done, 12 fixed points, 888 total boundary points. Logical boundary segment end points for region 1: Segment Starting Point Ending Point K L K L 1 106 1 1 1 2 1 1 1 352 3 1 352 36 350 4 36 350 90 282 5 90 282 93 149 6 93 149 102 123 7 102 123 105 122 8 105 122 106 122 9 106 122 115 46 10 115 46 120 1 11 120 1 106 1 Drive point at X =00.0, K = 1, Y = 55.0, L = 318. Region 2 mesh points K L X Y 1 318 0.00000000 55.0000000 Processing boundary data... Memory used for additional setup arrays: 1.101 M Region 1 Material = 1 Region boundary indicator = 1 Equal-weight triangles Region 1 is closed. Region 2 Material = 1 Region boundary indicator = -1 Driving field = 1.0 Equal-weight triangles Region 2 contains a single point. Logical boundary segment end points for all regions: Segment Starting Point Ending Point Index K L Index K L 1 1 106 1 106 1 1 2 106 1 1 457 1 352 3 457 1 352 493 36 350 4 493 36 350 589 90 282 5 589 90 282 722 93 149 6 722 93 149 749 102 123 7 749 102 123 752 105 122 8 752 105 122 753 106 122 9 753 106 122 829 115 46 10 829 115 46 874 120 1 11 874 120 1 888 106 1 Relaxation parameters, 32780 unknown points. Optimizing mesh by successive over relaxation... -------X coordinate-------- -------Y coordinate-------- Cycle Residual ETA RHO Residual ETA RHO 1 6.236E-03 1.0000 1.6000 2.338E-04 1.0000 1.6000 2 8.308E-03 0.6811 1.6000 3.018E-04 0.6795 1.6000 3 5.687E-03 0.6846 1.6000 2.081E-04 0.6896 1.6000 4 3.888E-03 0.6836 1.6000 1.452E-04 0.6975 1.6000 5 2.668E-03 0.6862 1.6000 1.025E-04 0.7061 1.6000 6 1.828E-03 0.6853 1.6000 7.357E-05 0.7178 1.6000 7 1.259E-03 0.6890 1.6000 5.407E-05 0.7349 1.6000 8 8.674E-04 0.6888 1.6000 4.107E-05 0.7595 1.6000 9 6.035E-04 0.6957 1.6000 3.253E-05 0.7922 1.6000 10 4.216E-04 0.6987 1.6000 2.701E-05 0.8304 1.6000 11 3.010E-04 0.7138 1.6000 2.346E-05 0.8685 1.6000 12 2.187E-04 0.7266 1.6000 2.113E-05 0.9008 1.6000 13 1.657E-04 0.7579 1.6000 1.955E-05 0.9250 1.6000 14 1.306E-04 0.7882 1.6000 1.840E-05 0.9414 1.6000 15 1.091E-04 0.8351 1.6000 1.752E-05 0.9521 1.6000 16 9.428E-05 0.8643 1.6000 1.680E-05 0.9589 1.6000 17 8.519E-05 0.9036 1.6000 1.618E-05 0.9634 1.6000 18 7.830E-05 0.9191 1.6000 1.564E-05 0.9664 1.6000 19 7.348E-05 0.9385 1.6000 1.515E-05 0.9685 1.6000 20 6.947E-05 0.9455 1.6000 1.470E-05 0.9701 1.6000 21 6.618E-05 0.9526 1.6000 1.428E-05 0.9714 1.6000 22 6.324E-05 0.9555 1.6000 1.388E-05 0.9724 1.6000 23 6.063E-05 0.9589 1.6000 1.351E-05 0.9733 1.6000 24 5.823E-05 0.9604 1.6000 1.316E-05 0.9741 1.6000 25 5.605E-05 0.9626 1.6000 1.283E-05 0.9748 1.6000 26 1.197E-04 2.1352 1.8265 3.268E-05 2.5476 1.8549 27 1.135E-04 0.9485 1.8265 3.127E-05 0.9568 1.8549 28 1.076E-04 0.9481 1.8265 2.994E-05 0.9573 1.8549 29 1.021E-04 0.9491 1.8265 2.867E-05 0.9578 1.8549 30 9.697E-05 0.9494 1.8265 2.747E-05 0.9582 1.8549 31 9.215E-05 0.9503 1.8265 2.634E-05 0.9587 1.8549 32 8.762E-05 0.9509 1.8265 2.526E-05 0.9591 1.8549 33 8.341E-05 0.9520 1.8265 2.424E-05 0.9596 1.8549 34 7.946E-05 0.9526 1.8265 2.327E-05 0.9600 1.8549 35 7.578E-05 0.9537 1.8265 2.235E-05 0.9605 1.8549 36 7.233E-05 0.9545 1.8265 2.148E-05 0.9609 1.8549 37 6.912E-05 0.9556 1.8265 2.065E-05 0.9613 1.8549 38 6.610E-05 0.9564 1.8265 1.986E-05 0.9617 1.8549 39 6.329E-05 0.9575 1.8265 1.910E-05 0.9622 1.8549 40 6.066E-05 0.9584 1.8265 1.839E-05 0.9626 1.8549 41 5.820E-05 0.9595 1.8265 1.771E-05 0.9630 1.8549 42 5.589E-05 0.9603 1.8265 1.706E-05 0.9633 1.8549 43 5.373E-05 0.9614 1.8265 1.644E-05 0.9637 1.8549 44 5.170E-05 0.9622 1.8265 1.585E-05 0.9641 1.8549 45 4.979E-05 0.9632 1.8265 1.529E-05 0.9645 1.8549 46 4.800E-05 0.9640 1.8265 1.475E-05 0.9648 1.8549 47 4.631E-05 0.9649 1.8265 1.424E-05 0.9652 1.8549 48 4.472E-05 0.9656 1.8265 1.374E-05 0.9655 1.8549 49 4.322E-05 0.9665 1.8265 1.328E-05 0.9659 1.8549 50 4.180E-05 0.9672 1.8265 1.283E-05 0.9662 1.8549 51 6.376E-05 1.5254 1.8990 1.723E-05 1.3433 1.9077 52 6.142E-05 0.9633 1.8990 1.659E-05 0.9627 1.9077 53 5.917E-05 0.9635 1.8990 1.597E-05 0.9629 1.9077 54 5.702E-05 0.9637 1.8990 1.538E-05 0.9632 1.9077 55 5.497E-05 0.9640 1.8990 1.482E-05 0.9635 1.9077 56 5.301E-05 0.9644 1.8990 1.428E-05 0.9637 1.9077 57 5.114E-05 0.9648 1.8990 1.377E-05 0.9639 1.9077 58 4.936E-05 0.9651 1.8990 1.327E-05 0.9641 1.9077 59 4.766E-05 0.9656 1.8990 1.280E-05 0.9644 1.9077 60 4.604E-05 0.9660 1.8990 1.235E-05 0.9645 1.9077 61 4.449E-05 0.9664 1.8990 1.191E-05 0.9647 1.9077 62 4.301E-05 0.9668 1.8990 1.149E-05 0.9649 1.9077 63 4.160E-05 0.9672 1.8990 1.109E-05 0.9651 1.9077 64 4.025E-05 0.9676 1.8990 1.071E-05 0.9652 1.9077 65 3.897E-05 0.9680 1.8990 1.034E-05 0.9654 1.9077 66 3.774E-05 0.9684 1.8990 9.980E-06 0.9655 1.9077 67 3.656E-05 0.9689 1.8990 9.637E-06 0.9657 1.9077 68 3.544E-05 0.9692 1.8990 9.307E-06 0.9658 1.9077 69 3.436E-05 0.9696 1.8990 8.990E-06 0.9659 1.9077 70 3.333E-05 0.9700 1.8990 8.685E-06 0.9661 1.9077 71 3.234E-05 0.9704 1.8990 8.391E-06 0.9662 1.9077 72 3.140E-05 0.9708 1.8990 8.109E-06 0.9663 1.9077 73 3.049E-05 0.9711 1.8990 7.836E-06 0.9664 1.9077 74 2.962E-05 0.9715 1.8990 7.574E-06 0.9666 1.9077 75 2.879E-05 0.9719 1.8990 7.322E-06 0.9667 1.9077 76 3.776E-05 1.3116 1.9310 8.471E-06 1.1570 1.9301 77 3.660E-05 0.9694 1.9310 8.178E-06 0.9653 1.9301 78 3.548E-05 0.9696 1.9310 7.895E-06 0.9654 1.9301 79 3.441E-05 0.9698 1.9310 7.623E-06 0.9656 1.9301 80 3.338E-05 0.9700 1.9310 7.362E-06 0.9657 1.9301 81 3.239E-05 0.9703 1.9310 7.110E-06 0.9658 1.9301 82 3.143E-05 0.9705 1.9310 6.868E-06 0.9660 1.9301 83 3.051E-05 0.9708 1.9310 6.635E-06 0.9661 1.9301 84 2.963E-05 0.9710 1.9310 6.411E-06 0.9662 1.9301 85 2.878E-05 0.9713 1.9310 6.195E-06 0.9663 1.9301 86 2.796E-05 0.9715 1.9310 5.987E-06 0.9664 1.9301 87 2.717E-05 0.9717 1.9310 5.787E-06 0.9666 1.9301 88 2.640E-05 0.9720 1.9310 5.594E-06 0.9667 1.9301 89 2.567E-05 0.9722 1.9310 5.408E-06 0.9668 1.9301 90 2.496E-05 0.9724 1.9310 5.230E-06 0.9670 1.9301 91 2.428E-05 0.9727 1.9310 5.058E-06 0.9671 1.9301 92 2.362E-05 0.9729 1.9310 4.892E-06 0.9672 1.9301 93 2.299E-05 0.9731 1.9310 4.732E-06 0.9673 1.9301 94 2.237E-05 0.9733 1.9310 4.578E-06 0.9675 1.9301 95 2.178E-05 0.9734 1.9310 4.430E-06 0.9676 1.9301 96 2.120E-05 0.9736 1.9310 4.287E-06 0.9677 1.9301 97 2.065E-05 0.9738 1.9310 4.149E-06 0.9679 1.9301 98 2.011E-05 0.9740 1.9310 4.017E-06 0.9680 1.9301 99 1.959E-05 0.9741 1.9310 3.889E-06 0.9682 1.9301 100 1.908E-05 0.9743 1.9310 3.765E-06 0.9683 1.9301 101 2.275E-05 1.1919 1.9473 4.093E-06 1.0871 1.9425 102 2.213E-05 0.9727 1.9473 3.961E-06 0.9676 1.9425 103 2.152E-05 0.9727 1.9473 3.833E-06 0.9678 1.9425 104 2.094E-05 0.9728 1.9473 3.710E-06 0.9679 1.9425 105 2.037E-05 0.9728 1.9473 3.592E-06 0.9681 1.9425 106 1.981E-05 0.9728 1.9473 3.478E-06 0.9683 1.9425 107 1.928E-05 0.9729 1.9473 3.368E-06 0.9684 1.9425 108 1.875E-05 0.9729 1.9473 3.262E-06 0.9686 1.9425 109 1.825E-05 0.9729 1.9473 3.160E-06 0.9688 1.9425 110 1.775E-05 0.9729 1.9473 3.062E-06 0.9689 1.9425 111 1.727E-05 0.9730 1.9473 2.967E-06 0.9691 1.9425 112 1.680E-05 0.9730 1.9473 2.876E-06 0.9692 1.9425 113 1.635E-05 0.9730 1.9473 2.788E-06 0.9693 1.9425 114 1.591E-05 0.9730 1.9473 2.703E-06 0.9695 1.9425 115 1.548E-05 0.9730 1.9473 2.621E-06 0.9696 1.9425 116 1.506E-05 0.9730 1.9473 2.541E-06 0.9697 1.9425 117 1.466E-05 0.9731 1.9473 2.465E-06 0.9699 1.9425 118 1.426E-05 0.9731 1.9473 2.391E-06 0.9700 1.9425 119 1.388E-05 0.9731 1.9473 2.319E-06 0.9701 1.9425 120 1.350E-05 0.9731 1.9473 2.250E-06 0.9702 1.9425 121 1.314E-05 0.9731 1.9473 2.183E-06 0.9703 1.9425 122 1.279E-05 0.9731 1.9473 2.119E-06 0.9704 1.9425 123 1.244E-05 0.9731 1.9473 2.056E-06 0.9706 1.9425 124 1.211E-05 0.9731 1.9473 1.996E-06 0.9707 1.9425 125 1.179E-05 0.9732 1.9473 1.938E-06 0.9708 1.9425 126 1.285E-05 1.0904 1.9551 2.046E-06 1.0557 1.9510 127 1.249E-05 0.9719 1.9551 1.985E-06 0.9705 1.9510 128 1.214E-05 0.9718 1.9551 1.927E-06 0.9707 1.9510 129 1.180E-05 0.9718 1.9551 1.871E-06 0.9708 1.9510 130 1.146E-05 0.9718 1.9551 1.817E-06 0.9709 1.9510 131 1.114E-05 0.9718 1.9551 1.764E-06 0.9711 1.9510 132 1.082E-05 0.9718 1.9551 1.713E-06 0.9712 1.9510 133 1.052E-05 0.9718 1.9551 1.664E-06 0.9713 1.9510 134 1.022E-05 0.9718 1.9551 1.617E-06 0.9714 1.9510 135 9.934E-06 0.9718 1.9551 1.571E-06 0.9715 1.9510 Iteration converged. Generation completed. Problem description: 201 MHz MUCOOL cavity with bowed out windows Problem file: C:\psfish\cwin\BOW.AF 7-12-2005 10:00:56 Problem file length: 1259 bytes Originating program: Autofish Problem type: Unknown RF Cavity Problem constants and variables. Letter A in the code column indicates a value supplied in the Automesh input file. Variable Code Value Description ALPHAT 3.930000000E-03 Temperature coefficient of resistance ASCALE 3767.30313 Scaling factor for H at drive point BETA 0.0 Particle velocity BETA1 0.100000000 Starting BETA in transit-time table BETA2 0.950000000 Ending BETA in transit-time table CCLDELK 1.00000000 Increment for coupling for table in SFO CCLMAXK 6.00000000 Highest coupling for table in SFO CCLMINK 1.00000000 Lowest coupling for table in SFO CLENGTH 0.0 Cavity length for normalization in SFO CLIGHT 2.997924580E+10 Exact speed of light in cm/sec CONV 1.00000000 Length conversion (number of units per cm) DBETA 5.000000000E-02 BETA increment in transit-time table DELFR 0.0 Frequency step size for a resonance search DIAGDLL 0 If 1, DLL writes diagnostics to DiagDLL.txt DPHI 180.000000 Phase length of the problem geometry DSLOPE 1.00000000 Slope of D(k^2) function DSTOLER 2.000000000E-02 Tolerance required on D(k^2) DX1 0.200103613 First X mesh interval (at XMIN) DXMIN 0.200000000 Minimum X mesh interval (found by Automesh) DYMIN 0.173361819 Minimum Y mesh interval (found by Automesh) ENORM 1000000.00 Field normalization for NORM=4 option EPS0 8.854187818E-12 Permittivity of free space EPSIK 1.000000000E-04 Frequency convergence parameter EPSO 1.000000000E-05 Convergence parameter in mesh optimization EZERO 1000000.00 E0 for normalization in SFO when NORM=0 EZEROT 1000000.00 E0*T for normalization in SFO when NORM=1 FMU0 1.256637061E-06 Permeability of free space FREQ A 201.250000 RF cavity resonant frequency FREQD 0.0 Design frequency for a cavity (MHz) HPHI 5000.00000 Normalization magnetic field for NORM=2 IBETA 0 If >0, SFO writes transit-time vs BETA ICCC 1 1 for real arrays, 2 for complex arrays ICCP 1 If 1, compute material power loss ICORNER1 0 First corner segment for computing average H ICORNER2 0 Last corner segment for computing average H ICYLIN 1 0 for X,Y problems, 1 for Z,R problems IMAX 122 KMAX+2 INFODATA 0 Number of tuning-code parameters IOBSEG -1 First segment of the CCL outer boundary IPIVOT 1 Pivoting in matrix inversion routines IRESID 0 If 1, calculate potential residuals IRMAX 25 Used in optimization of RHOXY IRTYPE 0 Surface resistance option indicator ISLOT 0 If 1, SFO computes coupling-slot power loss ITFILE 0 If 1, SFO writes transit-time plot file ITOT 43188 (KMAX+2)*(LMAX+2) KDRI 1 K coordinate of the drive point KMAX 120 Number of horizontal logical mesh points KMETHOD 0 Wavenumber computation method (1= use beta) KPROB A 1 Problem type indicator (Superfish) LAST35 0 Code for last program to update T35 file LCYCLE 135 Iteration number in mesh optimization LDRI 318 L coordinate of the drive point LINT 1 Logical-mesh coordinate for Ez integration LMAX 352 Number of vertical logical mesh points MAXCY -1 Maximum number of cycles (-1: use default) MAXPPR 889 Maximum points per region NAIR 33546 Number of air points NBND 120 Number of Dirichlet boundary points NBSLF 1 Left-side boundary condition NBSLO 0 Lower boundary condition NBSRT 1 Right-side boundary condition NBSUP 1 Upper boundary condition NDRI 38798 Drive point index = IRLAX(NPINP) NEGAT 0 Zero-area triangle indicator NFE 0 Number of iron points NHSTEM 1 Number of half stems NINTER 0 Number of interface points NMATR 0 Number of material records in T35 file NORM 0 Normalization method in SFO NPBOUND 888 Total number of boundary points in the mesh NPINP 33667 Total points in problem NPONTS 32780 Number of unknown relaxation points NREG 2 Number of regions NRMSEG 1 Normalization segment number for NORM=2 NSEG 11 Number of boundary segments NSPL 1 Number of special-potential points NSTEP 0 Number of steps for a resonance search OMEGAM 1.000000000E-03 Used in optimization of RHOXY PI 3.14159265 The number pi to machine precision PLCELL 360.000000 Phase length per cell for multicell problems RESIDR 1.000000000E-08 Residual resistance of a superconductor RFMU 1.00000000 Permeability for rf surface resistance RHO 1.724100000E-06 Material resistivity (Ohm-m) RHOR 1.724100000E-06 Reference resistivity (Ohm-cm) at TEMPR RHOXY 1.60000000 Over-relaxation factor in mesh optimization RMASS -2.00000000 Rest mass energy of particle in SFO RS 0.0 RF surface resistance (Ohms) RSTEM 1.00000000 Stem radius in cm SLOSS 3.000000000E-02 Coupling-slot power factor per % coupling TC 9.20000000 Critical temperature of a superconductor TEMPC 20.0000000 Normal conductor operating temperature TEMPK 2.00000000 Operating temperature of a superconductor TEMPR 20.0000000 Reference temperature for IRTYPE=3 TRIAVG 1.737069097E-02 Average area of all triangles TRIMAX 2.617103210E-02 Area of the largest positive-area triangle TRIMIN 8.276260966E-03 Area of the smallest positive-area triangle VOLUME 201378.787 Cavity volume (cylindrical symmetry only) XDRI A 0.0 X coordinate of the drive point XMAXG 23.8123300 Upper X bound of the problem geometry XMING 0.0 Lower X bound of the problem geometry XNORM1 0.0 Starting X for NORM=4 integration path XNORM2 0.0 Ending X for NORM=4 integration path XYAREA 1154.19556 Total cross sectional area YDRI A 55.0000000 Y coordinate of the drive point YMAXG 60.8499980 Upper Y bound of the problem geometry YMING 0.0 Lower Y bound of the problem geometry YNORM1 0.0 Starting Y for NORM=4 integration path YNORM2 0.0 Ending Y for NORM=4 integration path ZCTR 0.0 Reference Z in transit-time integrals