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Shocked Molecular Solids: Vibrational Up Pumping, Defect Hot Spot Formation, andthe Onset of Chemistry

机译:震荡的分子固体:振动上升泵浦,缺陷热点形成和化学开始

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A model and detailed calculations are presented to describe the flow of energy ina shocked solid consisting of large organic molecules. The shock excites the bulk phonons, which rapidly achieve a state of phonon equilibrium characterized by a phonon quasitemperature. The excess energy subsequently flows into the molecular vibrations, which are characterized by a vibrational quasitemperature. The multiphonon up pumping process occurs because of anharmonic coupling terms in the solid state potential surface. Of central importance are the lowest energy molecular vibrations, or 'doorway' modes, through which mechanical energy enters and leaves the molecules. Using realistic experimental parameters, it is found that the quasitemperature increase of the internal molecular vibrations and equilibration between the phonons and vibrations is achieved on the time scale of a few tens of picoseconds. A new mechanism is presented for the generation of 'hot spots' at defects. Organic compounds. (jes)

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