Harmonic repulsion potential: Difference between revisions

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(Created page with "The '''Harmonic repulsion potential''' is given by (<ref>[http://dx.doi.org/10.1103/PhysRevLett.103.245701 Ning Xu, Thomas K. Haxton, Andrea J. Liu, and Sidney R. Nagel "Equivale...")
 
m (Added internal link to plot of potential)
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where <math> \Phi_{12}\left( r \right) </math> is the [[intermolecular pair potential]], <math>r := |\mathbf{r}_1 - \mathbf{r}_2|</math> is the distance between site 1 and site 2. <math>\sigma</math> represents a length scale and <math>\epsilon</math> an energy.  
where <math> \Phi_{12}\left( r \right) </math> is the [[intermolecular pair potential]], <math>r := |\mathbf{r}_1 - \mathbf{r}_2|</math> is the distance between site 1 and site 2. <math>\sigma</math> represents a length scale and <math>\epsilon</math> an energy. For example, for <math>\epsilon=20</math> the potential looks like
 
:[[Image:harmonic_sphere.png|500px]]
==Phase diagram==
==Phase diagram==
The [[Phase diagrams |phase diagram]] in the [[Phase diagrams: Pressure-temperature plane |  pressure-temperature plane]] has been calculated by Zhu and Lu <ref>[http://dx.doi.org/10.1063/1.3548886  You-Liang Zhu  and Zhong-Yuan Lu  "Phase diagram of spherical particles interacted with harmonic repulsions", Journal of Chemical Physics '''134''' 044903 (2011)]</ref>.
The [[Phase diagrams |phase diagram]] in the [[Phase diagrams: Pressure-temperature plane |  pressure-temperature plane]] has been calculated by Zhu and Lu <ref>[http://dx.doi.org/10.1063/1.3548886  You-Liang Zhu  and Zhong-Yuan Lu  "Phase diagram of spherical particles interacted with harmonic repulsions", Journal of Chemical Physics '''134''' 044903 (2011)]</ref>.

Revision as of 12:43, 26 January 2011

The Harmonic repulsion potential is given by ([1] Eq. 2):

where is the intermolecular pair potential, is the distance between site 1 and site 2. represents a length scale and an energy. For example, for the potential looks like

Phase diagram

The phase diagram in the pressure-temperature plane has been calculated by Zhu and Lu [2].

See also

References