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analytic_functions [2018/09/24 17:38] danielmodels:analytic_functions [2019/06/18 17:44] daniel
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 For details see the ''functions.h'' and ''functions.c'' files. For details see the ''functions.h'' and ''functions.c'' files.
  
-If you want to add other analytic potentials see [[:add_new_functions|this guide]].+If you want to add other analytic potentials see [[models:adding_analytic_functions|this guide]].
  
 Each function is given in the following form: Each function is given in the following form:
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-^ ''gljm'' | 12 | $V_0,b_1,b_2,r_1,m,\delta,A_0,$ $B_0,C_0,r_0,y,\gamma$ | [[http://dx.doi.org/doi:10.1016/j.actamat.2005.05.001|Link]] |+^ ''gljm'' | 12 | $V_0,b_1,b_2,r_1,\delta,m,A_0,$ $B_0,C_0,r_0,y,\gamma$ | [[http://dx.doi.org/doi:10.1016/j.actamat.2005.05.001|Link]] |
 | $$V(r)=\frac{V_0}{b_2-b_1}\left(\frac{b_2}{(r/r_1)^{b_1}}-\frac{b_1}{(r/r_1)^{b_2}}\right)+\delta $$ $$ + m\left[A_0(r-r_0)^y\exp\left(-\gamma(r-r_0)\right)\left[1+B_0\exp\left(-\gamma(r-r_0)\right)\right]+C_0\right]$$ |||| | $$V(r)=\frac{V_0}{b_2-b_1}\left(\frac{b_2}{(r/r_1)^{b_1}}-\frac{b_1}{(r/r_1)^{b_2}}\right)+\delta $$ $$ + m\left[A_0(r-r_0)^y\exp\left(-\gamma(r-r_0)\right)\left[1+B_0\exp\left(-\gamma(r-r_0)\right)\right]+C_0\right]$$ ||||
  
models/analytic_functions.txt · Last modified: 2021/11/12 15:56 by daniel