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 Unpublished - rights reserved under Copyright Laws of the United States.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 7.17 released 1-13-2006 Program file: C:\LANL\AUTOFISH.EXE Problem file: C:\LANL\Examples\RADIOF~1\PILLBO~1\805MHZ.AF 11-12-2007 17:35:34 SF.INI file: C:\LANL\SF.INI 11-12-2007 14:55:22 Problem description: 0.805-GHz TM010 Modified Pillbox Cavity Pillbox cavity with a 7-cm-radius bore tube [Originally appeared in 1987 User's Guide 1.4] 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 = 22.8 DY = 0.1732051 [=DX*sin(60)] YMIN = 0.0 YMAX = 32.75 DX1 = 0.2 KMAX = 115 DY1 = 0.1732804 LMAX = 190 ITOT = 22464 Memory used for the solution file: 808.704 K Memory used for Automesh setup data: 355.752 K Region 1 boundary points from the PO namelist: Point NT X0 Y0 X Y R THETA A B 1 1 0.000 0.000 2 1 0.000 32.75 3 1 17.50 32.75 4 1 17.50 3.400 5 1 22.80 3.400 6 1 22.80 0.000 7 1 0.000 0.000 Number of user-supplied fixed points = 7 Fixed points added at line regions = 0 Fixed points added on overlapping regions = 0 Total number of fixed points = 7 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 32.75 190 190 3 1 17.50 32.75 89 89 4 1 17.50 3.400 170 170 5 1 22.80 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0.00000000 4 1 0.600000000 0.00000000 3 1 0.400000000 0.00000000 2 1 0.200000000 0.00000000 1 1 0.00000000 0.00000000 Region 1 done, 7 fixed points, 607 total boundary points. Logical boundary segment end points for region 1: Segment Starting Point Ending Point K L K L 1 1 1 1 190 2 1 190 89 190 3 89 190 89 21 4 89 21 115 21 5 115 21 115 1 6 115 1 1 1 Drive point at X =00.0, K = 1, Y = 32.75, L = 190. Region 2 mesh points K L X Y 1 190 0.00000000 32.7500000 Processing boundary data... Memory used for additional setup arrays: 583.024 K 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 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 1 1 190 1 190 2 190 1 190 278 89 190 3 278 89 190 447 89 21 4 447 89 21 473 115 21 5 473 115 21 493 115 1 6 493 115 1 607 1 1 Relaxation parameters, 16850 unknown points. Optimizing mesh by successive over relaxation... -------X coordinate-------- -------Y coordinate-------- Cycle Residual ETA RHO Residual ETA RHO 1 8.048E-03 1.0000 1.6000 5.398E-05 1.0000 1.6000 2 1.088E-02 0.6803 1.6000 7.059E-05 0.6747 1.6000 3 7.435E-03 0.6831 1.6000 4.936E-05 0.6992 1.6000 4 5.064E-03 0.6812 1.6000 3.536E-05 0.7163 1.6000 5 3.462E-03 0.6836 1.6000 2.599E-05 0.7351 1.6000 6 2.359E-03 0.6814 1.6000 1.962E-05 0.7550 1.6000 7 1.616E-03 0.6850 1.6000 1.531E-05 0.7802 1.6000 8 1.103E-03 0.6824 1.6000 1.234E-05 0.8060 1.6000 9 7.596E-04 0.6889 1.6000 1.029E-05 0.8342 1.6000 10 5.213E-04 0.6863 1.6000 8.837E-06 0.8584 1.6000 11 3.649E-04 0.7001 1.6000 7.781E-06 0.8805 1.6000 12 2.558E-04 0.7008 1.6000 6.977E-06 0.8967 1.6000 13 1.871E-04 0.7317 1.6000 6.348E-06 0.9098 1.6000 14 1.392E-04 0.7436 1.6000 5.834E-06 0.9190 1.6000 15 1.113E-04 0.8001 1.6000 5.402E-06 0.9261 1.6000 16 9.154E-05 0.8222 1.6000 5.031E-06 0.9313 1.6000 17 8.088E-05 0.8836 1.6000 4.706E-06 0.9353 1.6000 18 7.240E-05 0.8951 1.6000 4.417E-06 0.9387 1.6000 19 6.765E-05 0.9344 1.6000 4.157E-06 0.9412 1.6000 20 6.286E-05 0.9292 1.6000 3.868E-06 0.9304 1.6000 21 5.963E-05 0.9486 1.6000 3.617E-06 0.9351 1.6000 22 5.636E-05 0.9452 1.6000 3.389E-06 0.9370 1.6000 23 5.377E-05 0.9540 1.6000 3.183E-06 0.9392 1.6000 24 5.119E-05 0.9521 1.6000 2.999E-06 0.9421 1.6000 25 4.897E-05 0.9567 1.6000 2.834E-06 0.9449 1.6000 26 9.983E-05 2.0384 1.8148 5.209E-06 1.8384 1.7940 27 9.403E-05 0.9420 1.8148 4.877E-06 0.9363 1.7940 28 8.830E-05 0.9391 1.8148 4.578E-06 0.9387 1.7940 29 8.306E-05 0.9407 1.8148 4.313E-06 0.9420 1.7940 30 7.804E-05 0.9396 1.8148 4.080E-06 0.9462 1.7940 31 7.351E-05 0.9420 1.8148 3.879E-06 0.9506 1.7940 32 6.925E-05 0.9420 1.8148 3.705E-06 0.9552 1.7940 33 6.541E-05 0.9446 1.8148 3.556E-06 0.9596 1.7940 34 6.183E-05 0.9453 1.8148 3.427E-06 0.9637 1.7940 35 5.862E-05 0.9480 1.8148 3.315E-06 0.9674 1.7940 36 5.564E-05 0.9491 1.8148 3.217E-06 0.9705 1.7940 37 5.295E-05 0.9517 1.8148 3.131E-06 0.9732 1.7940 38 5.046E-05 0.9530 1.8148 3.054E-06 0.9753 1.7940 39 4.820E-05 0.9552 1.8148 2.984E-06 0.9771 1.7940 40 4.610E-05 0.9565 1.8148 2.919E-06 0.9784 1.7940 41 4.419E-05 0.9585 1.8148 2.859E-06 0.9795 1.7940 42 4.241E-05 0.9597 1.8148 2.803E-06 0.9803 1.7940 43 4.077E-05 0.9614 1.8148 2.750E-06 0.9809 1.7940 44 3.924E-05 0.9625 1.8148 2.698E-06 0.9814 1.7940 45 3.782E-05 0.9639 1.8148 2.649E-06 0.9817 1.7940 46 3.649E-05 0.9648 1.8148 2.601E-06 0.9819 1.7940 47 3.525E-05 0.9660 1.8148 2.555E-06 0.9821 1.7940 48 3.408E-05 0.9668 1.8148 2.509E-06 0.9822 1.7940 49 3.298E-05 0.9678 1.8148 2.465E-06 0.9823 1.7940 50 3.194E-05 0.9685 1.8148 2.421E-06 0.9823 1.7940 51 5.141E-05 1.6098 1.8970 5.396E-06 2.2283 1.9161 52 4.946E-05 0.9621 1.8970 5.243E-06 0.9718 1.9161 53 4.758E-05 0.9619 1.8970 5.093E-06 0.9713 1.9161 54 4.576E-05 0.9619 1.8970 4.944E-06 0.9708 1.9161 55 4.402E-05 0.9620 1.8970 4.798E-06 0.9704 1.9161 56 4.236E-05 0.9622 1.8970 4.654E-06 0.9699 1.9161 57 4.077E-05 0.9625 1.8970 4.512E-06 0.9695 1.9161 58 3.925E-05 0.9627 1.8970 4.372E-06 0.9690 1.9161 59 3.780E-05 0.9631 1.8970 4.235E-06 0.9686 1.9161 60 3.641E-05 0.9634 1.8970 4.100E-06 0.9682 1.9161 61 3.509E-05 0.9637 1.8970 3.968E-06 0.9678 1.9161 62 3.383E-05 0.9640 1.8970 3.838E-06 0.9674 1.9161 63 3.262E-05 0.9644 1.8970 3.712E-06 0.9670 1.9161 64 3.147E-05 0.9647 1.8970 3.588E-06 0.9667 1.9161 65 3.037E-05 0.9651 1.8970 3.467E-06 0.9663 1.9161 66 2.932E-05 0.9654 1.8970 3.349E-06 0.9660 1.9161 67 2.831E-05 0.9657 1.8970 3.234E-06 0.9657 1.9161 68 2.735E-05 0.9660 1.8970 3.123E-06 0.9654 1.9161 69 2.643E-05 0.9663 1.8970 3.014E-06 0.9652 1.9161 70 2.555E-05 0.9666 1.8970 2.908E-06 0.9650 1.9161 71 2.470E-05 0.9670 1.8970 2.806E-06 0.9647 1.9161 72 2.389E-05 0.9672 1.8970 2.706E-06 0.9645 1.9161 73 2.312E-05 0.9675 1.8970 2.610E-06 0.9644 1.9161 74 2.237E-05 0.9678 1.8970 2.516E-06 0.9642 1.9161 75 2.166E-05 0.9681 1.8970 2.426E-06 0.9640 1.9161 76 2.684E-05 1.2393 1.9265 2.751E-06 1.1339 1.9322 77 2.592E-05 0.9658 1.9265 2.645E-06 0.9616 1.9322 78 2.504E-05 0.9658 1.9265 2.542E-06 0.9612 1.9322 79 2.418E-05 0.9659 1.9265 2.443E-06 0.9608 1.9322 80 2.336E-05 0.9660 1.9265 2.346E-06 0.9604 1.9322 81 2.257E-05 0.9661 1.9265 2.252E-06 0.9601 1.9322 82 2.181E-05 0.9663 1.9265 2.162E-06 0.9598 1.9322 83 2.108E-05 0.9666 1.9265 2.074E-06 0.9595 1.9322 84 2.038E-05 0.9668 1.9265 1.989E-06 0.9592 1.9322 85 1.971E-05 0.9670 1.9265 1.908E-06 0.9589 1.9322 86 1.906E-05 0.9673 1.9265 1.829E-06 0.9586 1.9322 87 1.844E-05 0.9676 1.9265 1.753E-06 0.9584 1.9322 88 1.785E-05 0.9678 1.9265 1.679E-06 0.9582 1.9322 89 1.728E-05 0.9681 1.9265 1.609E-06 0.9579 1.9322 90 1.673E-05 0.9684 1.9265 1.541E-06 0.9577 1.9322 91 1.621E-05 0.9687 1.9265 1.475E-06 0.9575 1.9322 92 1.571E-05 0.9689 1.9265 1.412E-06 0.9573 1.9322 93 1.522E-05 0.9692 1.9265 1.352E-06 0.9571 1.9322 94 1.476E-05 0.9695 1.9265 1.294E-06 0.9570 1.9322 95 1.431E-05 0.9698 1.9265 1.238E-06 0.9568 1.9322 96 1.388E-05 0.9701 1.9265 1.184E-06 0.9566 1.9322 97 1.347E-05 0.9704 1.9265 1.133E-06 0.9565 1.9322 98 1.308E-05 0.9706 1.9265 1.083E-06 0.9564 1.9322 99 1.270E-05 0.9709 1.9265 1.036E-06 0.9563 1.9322 100 1.233E-05 0.9711 1.9265 9.903E-07 0.9561 1.9322 101 1.407E-05 1.1411 1.9427 1.004E-06 1.0134 1.9376 102 1.366E-05 0.9706 1.9427 9.585E-07 0.9551 1.9376 103 1.326E-05 0.9708 1.9427 9.152E-07 0.9549 1.9376 104 1.287E-05 0.9709 1.9427 8.738E-07 0.9547 1.9376 105 1.250E-05 0.9711 1.9427 8.341E-07 0.9546 1.9376 106 1.214E-05 0.9713 1.9427 7.961E-07 0.9545 1.9376 107 1.180E-05 0.9715 1.9427 7.598E-07 0.9544 1.9376 108 1.146E-05 0.9717 1.9427 7.251E-07 0.9543 1.9376 109 1.114E-05 0.9718 1.9427 6.919E-07 0.9543 1.9376 110 1.083E-05 0.9720 1.9427 6.603E-07 0.9543 1.9376 111 1.053E-05 0.9721 1.9427 6.301E-07 0.9543 1.9376 112 1.023E-05 0.9723 1.9427 6.014E-07 0.9543 1.9376 113 9.951E-06 0.9724 1.9427 5.739E-07 0.9544 1.9376 Iteration converged. Generation completed. Problem description: 0.805-GHz TM010 Modified Pillbox Cavity Pillbox cavity with a 7-cm-radius bore tube [Originally appeared in 1987 User's Guide 1.4] Problem file: C:\LANL\Examples\RADIOF~1\PILLBO~1\805MHZ.AF 11-12-2007 17:35:34 Problem file length: 727 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 A 0.950000000 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 0.200000000 First X mesh interval (at XMIN) DXMIN 0.200000000 Minimum X mesh interval (found by Automesh) DYMIN 0.173280423 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 805.000000 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 A 1 0 for X,Y problems, 1 for Z,R problems IMAX 117 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 22464 (KMAX+2)*(LMAX+2) KDRI 1 K coordinate of the drive point KMAX 115 Number of horizontal logical mesh points KMETHOD A 1 Wavenumber computation method (1= use beta) KPROB A 1 Problem type indicator (Superfish) LAST35 0 Code for last program to update T35 file LCYCLE 113 Iteration number in mesh optimization LDRI 190 L coordinate of the drive point LINT 1 Logical-mesh coordinate for Ez integration LMAX 190 Number of vertical logical mesh points MAXCY -1 Maximum number of cycles (-1: use default) MAXPPR 608 Maximum points per region NAIR 17340 Number of air points NBND 115 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 22232 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 607 Total number of boundary points in the mesh NPINP 17456 Total points in problem NPONTS 16850 Number of unknown relaxation points NREG 2 Number of regions NRMSEG 1 Normalization segment number for NORM=2 NSEG 6 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 1.723253848E-02 Average area of all triangles TRIMAX 2.284455088E-02 Area of the largest positive-area triangle TRIMIN 1.036705476E-02 Area of the smallest positive-area triangle VOLUME 59159.6823 Cavity volume (cylindrical symmetry only) XDRI A 0.0 X coordinate of the drive point XMAXG 22.8000000 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 591.145000 Total cross sectional area YDRI A 32.7500000 Y coordinate of the drive point YMAXG 32.7500000 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