DocumentCode :
1894523
Title :
Xwake 1.1: a new impedance and wake field software package
Author :
Saewert, G.W. ; Jurgens, T.G.
Author_Institution :
Fermi Nat. Accel. Lab., Batavia, IL, USA
Volume :
4
fYear :
1995
fDate :
1-5 May 1995
Firstpage :
2303
Abstract :
This paper outlines the novel features found in Xwake 1.1. This release of Xwake is a body of revolution (BOR) conformal finite difference time domain (FDTD) code written to model longitudinal and transverse wake fields and impedances. The package is capable of accurately modeling slowly tapered structures as well as devices containing dielectric and permeable media. A state of the art perfectly matched layer (PML) absorbing boundary condition (ABC) provides the ability to truncate the computational grid immediately at a devices´ beam pipe openings, increasing the computational efficiency of the package. The program includes automatic mesh generator, field solver and post processor plotting modules all integrated with an intuitive graphical user interface. Since the package is written with ANSI-C and the Motif widget set, Xwake 1.1 is portable across UNIX environments. The use of dynamic memory allocation enables the program to automatically scale itself to the problem size without resorting to code recompilation
Keywords :
Unix; beam handling equipment; electric impedance; finite difference time-domain analysis; graphical user interfaces; high energy physics instrumentation computing; mesh generation; particle accelerators; particle beam dynamics; software packages; ANSI-C; Motif widget set; UNIX environments; Xwake 1.1; automatic mesh generator; beam pipe openings; computational efficiency; computational grid; conformal finite difference time domain code; dielectric media; dynamic memory allocation; field solver; graphical user interface; impedance software package; longitudinal wake fields; particle accelerators; perfectly matched layer absorbing boundary condition; permeable media; postprocessor plotting modules; slowly tapered structures; transverse wake fields; wake field software package; Boundary conditions; Computational efficiency; Dielectric devices; Finite difference methods; Grid computing; Impedance; Packaging; Perfectly matched layers; Software packages; Time domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 1995., Proceedings of the 1995
Conference_Location :
Dallas, TX
Print_ISBN :
0-7803-2934-1
Type :
conf
DOI :
10.1109/PAC.1995.505532
Filename :
505532
Link To Document :
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