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| The '''Generalized exponential model''' (or '''GEM-m''' potential) is given by (Eq. x in <ref>unknown</ref>): | | The '''Generalized exponential model''' (or '''GEM-m''' potential) is given by (Eq. x in <ref></ref>): |
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| :<math> \Phi_{12}(r) = \epsilon \exp \left[ -\left( \frac{r}{\sigma} \right)^m \right]</math> | | :<math> \Phi_{12}(r) = \epsilon \exp \left[ -\left( \frac{r}{\sigma} \right)^m \right]</math> |
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| ==m=1== | | ==m=1== |
| Also known as the EXP model <ref>[http://dx.doi.org/10.1038/ncomms6424 Andreas K. Bacher, Thomas B. Schrøder and Jeppe C. Dyre "Explaining why simple liquids are quasi-universal", Nature Communications '''5''' Article number 5424 (2014)]</ref>. | | Also known as the EXP model |
| ==m=4==
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| 2-dimensions <ref>[http://dx.doi.org/10.1063/1.4901302 Santi Prestipino and Franz Saija "Hexatic phase and cluster crystals of two-dimensional GEM4 spheres", Journal of Chemical Physics '''141''' 184502 (2014)]</ref>.
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| ==See also== | | ==See also== |
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| <references/> | | <references/> |
| ;Related reading | | ;Related reading |
| *[https://doi.org/10.1063/1.5043546 Andreas Kvist Bacher, Thomas B. Schrøder, and Jeppe C. Dyre "The EXP pair-potential system. I. Fluid phase isotherms, isochores, and quasiuniversality", Journal of Chemical Physics '''149''' 114501 (2018)]
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| *[https://doi.org/10.1063/1.5043548 Andreas Kvist Bacher, Thomas B. Schrøder, and Jeppe C. Dyre "The EXP pair-potential system. II. Fluid phase isomorphs", Journal of Chemical Physics '''149''' 114502 (2018)]
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| [[category: models]] | | [[category: models]] |