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projects [2014/07/25 10:24]
schunck [2) HF Problem in the Full Spherical Harmonic Oscillator Basis]
projects [2014/07/28 07:33] (current)
schunck [3) Possible Extensions for Week 3 and Later]
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 ==== 3) Possible Extensions for Week 3 and Later ==== ==== 3) Possible Extensions for Week 3 and Later ====
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 +Upon completion, the (full) HF code that you have developed can be used to explore various other approximations to the many-body problem. The figure below shows some of the possible extensions, and how one could piece them together (like Lego pieces, ideally). ​
  
 {{ :​scheme.png?​300 |}} {{ :​scheme.png?​300 |}}
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 +In this {{HF_extensions.pdf|document}},​ we explain in more details how to implement 3 of these extensions, namely (i) the solution of the HFB equations in spherical symmetry, (ii) the solution of the RPA equations in spherical symmetry, and (iii) the solutions of the deformed HF equations. When you are done with the full HF program, you should choose one of these problems and start working on it. We can provide benchmarks for the spherical HFB problem and the deformed HF, not yet for the RPA.
  
 __References__  ​ __References__  ​
   * S. K. Bogner, R. J. Furnstahl, H. Hergert, M. Kortelainen,​ P. Maris, M. Stoitsov, and J. P. Vary, //Testing the density matrix expansion against ab initio calculations of trapped neutron drops//, [[https://​journals.aps.org/​prc/​abstract/​10.1103/​PhysRevC.84.044306|Phys. Rev. C 84, 044306 (2011)]] ​   * S. K. Bogner, R. J. Furnstahl, H. Hergert, M. Kortelainen,​ P. Maris, M. Stoitsov, and J. P. Vary, //Testing the density matrix expansion against ab initio calculations of trapped neutron drops//, [[https://​journals.aps.org/​prc/​abstract/​10.1103/​PhysRevC.84.044306|Phys. Rev. C 84, 044306 (2011)]] ​
projects.1406298289.txt.gz ยท Last modified: 2014/07/25 10:24 by schunck