In a molecular solid, there is an ultrafast transfer of energy between the internal molecular vibrations and the external modes or lattice vibrations. Two interesting examples involving this energy transfer are presented in this thesis. First, an ultrafast imaging apparatus is constructed and used to investigate spatially inhomogeneous dynamics in laser surface ablation of polymers. Second, time dependent mechanical energy redistribution in ultrahot anharmonic solids composed of organic molecules is studied theoretically.Using the ultrafast imaging apparatus, computer-digitized images are acquired over the time range 10$\sp{-12}$-10$\sp0$ s. The images are analyzed to obtain the time dependent behavior of the ablated polymer. Near the peak ...
In this chapter, we explore the mechanochemical principles that underpin the initiation of energetic...
Photothermal laser ablation is studied using poly-(methyl methacrylate) films doped with a dye, IR-1...
This work aims at deeper understanding of chemical reaction dynamics, ultrafast photochemical and ph...
In a molecular solid, there is an ultrafast transfer of energy between the internal molecular vibrat...
With the aim of developing new technologies for the detection and defeat of energetic materials, thi...
Understanding the microscopic details of shock-wave initiation of energetic materials requires a rea...
Molecular mechanical energy transfer in energetical materials is investigated because of the likely ...
Understanding the microscopic details of shock-wave initiation of energetic materials requires a rea...
Molecular mechanical energy transfer in energetical materials is investigated because of the likely ...
Molecular dynamics simulations are used to investigate the effect of photochemical processes on mole...
272 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.The processes of vibrational ...
272 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.The processes of vibrational ...
Molecular dynamics calculations were performed to describe vibrational to translational energy trans...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
A general framework for the simulation of ultrafast pump-probe time resolved experiments based on Bo...
In this chapter, we explore the mechanochemical principles that underpin the initiation of energetic...
Photothermal laser ablation is studied using poly-(methyl methacrylate) films doped with a dye, IR-1...
This work aims at deeper understanding of chemical reaction dynamics, ultrafast photochemical and ph...
In a molecular solid, there is an ultrafast transfer of energy between the internal molecular vibrat...
With the aim of developing new technologies for the detection and defeat of energetic materials, thi...
Understanding the microscopic details of shock-wave initiation of energetic materials requires a rea...
Molecular mechanical energy transfer in energetical materials is investigated because of the likely ...
Understanding the microscopic details of shock-wave initiation of energetic materials requires a rea...
Molecular mechanical energy transfer in energetical materials is investigated because of the likely ...
Molecular dynamics simulations are used to investigate the effect of photochemical processes on mole...
272 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.The processes of vibrational ...
272 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.The processes of vibrational ...
Molecular dynamics calculations were performed to describe vibrational to translational energy trans...
Mechanical action can produce dramatic physical and mechanochemical effects when the energy is spati...
A general framework for the simulation of ultrafast pump-probe time resolved experiments based on Bo...
In this chapter, we explore the mechanochemical principles that underpin the initiation of energetic...
Photothermal laser ablation is studied using poly-(methyl methacrylate) films doped with a dye, IR-1...
This work aims at deeper understanding of chemical reaction dynamics, ultrafast photochemical and ph...