Title of article :
Wave packet molecular dynamics simulations of hydrogen under extreme conditions
Author/Authors :
Knaup، نويسنده , , M. and Zwicknagel، نويسنده , , G. and Reinhard، نويسنده , , P.-G. and Toepffer، نويسنده , , C.، نويسنده ,
Pages :
4
From page :
267
To page :
270
Abstract :
With the aid of “Wave Packet Molecular Dynamics” (WPMD) simulations we investigate hydrogen under extreme conditions. In this model the protons are treated as classical point-particles, whereas the electrons are represented by antisymmetrized wavepackets following a pseudo-hamiltonian dynamics. For the simulations we use 512 particles in a periodically continued cubic box. The equation of state, i.e. the pressure p as function of the temperature T for an electron density n=2×1029 m−3 is rather flat around 12,000 K. In this regime the molecules dissociate. The linear mixing model shows at lower absolute values a more pronounced behaviour of the pressure. The new path integral Monte Carlo results for T>10,000 K show a similar flattening, while the tight-binding model shows hardly any. A comparison of our WPMD results with experiments for p(n) at T=300 K shows the importance of antisymmetrization.
Keywords :
Dense hydrogen , Quantum statistical mechanics , equation of state
Journal title :
Astroparticle Physics
Record number :
2014991
Link To Document :
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