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NESC0381 LYNNE.

LYNNE, Inelastic Scattering by Multipole Expansion of Woods-Saxon

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1. NAME OR DESIGNATION OF PROGRAM:  LYNNE.
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2. COMPUTERS
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Program name Package id Status Status date
LYNNE NESC0381/01 Tested 01-NOV-1971

Machines used:

Package ID Orig. computer Test computer
NESC0381/01 IBM 360 series IBM 360 series
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3. NATURE OF PHYSICAL PROBLEM SOLVED

LYNNE performs a multipole expansion of the Woods-Saxon potential. The numbers generated are suitable for microscopic calculations of inelastic scattering from nuclei which use a Woods-Saxon interaction between the projectile and the target nucleons.
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4. METHOD OF SOLUTION:  The Romberg method of integration is used in LYNNE.
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5. RESTRICTIONS ON THE COMPLEXITY OF THE PROBLEM
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6. TYPICAL RUNNING TIME
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7. UNUSUAL FEATURES: UNUSUAL FEATURES OF THE PROGRAM
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8. RELATED AND AUXILIARY PROGRAMS

LYNNE is written to be compatible with the code ATHENA which calculates microscopic form factors using single particle wave functions.
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9. STATUS
Package ID Status date Status
NESC0381/01 01-NOV-1971 Tested at NEADB
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10. REFERENCES

- M. B. Johnson:
  Multiple Expansion of the Woods-Saxon Potential. The Code LYNNE.   ORNL-TM-1709, December 7 1966
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11. HARDWARE REQUIREMENTS: MACHINE REQUIREMENTS
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12. PROGRAMMING LANGUAGE(S) USED
Package ID Computer language
NESC0381/01 FORTRAN-IV
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13. SOFTWARE REQUIREMENTS: OPERATING SYSTEM OR MONITOR UNDER WHICH PROGRAM IS EXECUTED
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14. ANY OTHER PROGRAMMING OR OPERATING INFORMATION OR RESTRICTIONS

Although LYNNE is written specifically for the Woods-Saxon poten- tial, the code could be modified to accept other potentials.
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15. NAME AND ESTABLISHMENT OF AUTHOR

                 M. B. Johnson
                 Center for Theoretical Physics
                 Massachusetts Institute of Technology
                 Cambridge, Massachusetts  02139
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16. MATERIAL AVAILABLE
NESC0381/01
File name File description Records
NESC0381_01.001 SOURCE PROGRAM + DATA FOR A SAMPLE CASE 450
NESC0381_01.002 OUTPUT PRINT 229
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17. CATEGORIES
  • A. Cross Section and Resonance Integral Calculations

Keywords: cross sections, inelastic scattering, optical models.