[[abstract]]Collisional energy-transfer probability distribution functions of highly vibrationally excited molecules and the existence of supercollisions remain as the outstanding questions in the field of intermolecular energy transfer. In this investigation, collisional interactions between ground state Kr atoms and highly vibrationally excited azulene molecules (4.66 eV internal energy) were examined at a collision energy of 410 cm–1 using a crossed molecular beam apparatus and time-sliced ion imaging techniques. A large amount of energy transfer (1000–5000 cm–1) in the backward direction was observed. We report the experimental measurement for the shape of the energy-transfer probability distribution function along with a direct obse...
Classical trajectory calculations were performed to simulate state-resolved energy transfer experime...
The collisional relaxation of highly excited molecules plays a very important role in many chemistry...
The method of obtaining collisional energy transfer data for collissions between a highly excited po...
[[abstract]]The energy transfer dynamics between highly vibrationally excited azulene molecules (37 ...
[[abstract]]The energy-transfer dynamics between highly vibrationally excited azulene molecules and ...
[[abstract]]Energy transfer between highly vibrationally excited naphthalene and Kr atom in a series...
[[abstract]]Photodissociation of azulene-Kr van der Waals clusters at 266 and 248 nm was studied us...
The results are reported of a series of trajectory studies on Xe colliding with highly excited azule...
Classical trajectory calculations of the rate of collisional energy transfer between a bath gas and ...
[[abstract]]The vibrational energy dependence, H and D atom isotope effects, and the mass effects in...
[[abstract]]A simple method to generate and characterize a pure highly vibrationally excited azulene...
Part of the Biochemistry Commons, and the Chemistry Commons This Dissertation is brought to you for ...
Expressions are deduced to enable the mean energy transferred in collisions between a highly excited...
Can a molecule be efficiently activated with a large amount of energy in a single collision with a f...
Author Institution: Department of Chemistry, Temple University; Philadelphia, Pennsylvania 19122, US...
Classical trajectory calculations were performed to simulate state-resolved energy transfer experime...
The collisional relaxation of highly excited molecules plays a very important role in many chemistry...
The method of obtaining collisional energy transfer data for collissions between a highly excited po...
[[abstract]]The energy transfer dynamics between highly vibrationally excited azulene molecules (37 ...
[[abstract]]The energy-transfer dynamics between highly vibrationally excited azulene molecules and ...
[[abstract]]Energy transfer between highly vibrationally excited naphthalene and Kr atom in a series...
[[abstract]]Photodissociation of azulene-Kr van der Waals clusters at 266 and 248 nm was studied us...
The results are reported of a series of trajectory studies on Xe colliding with highly excited azule...
Classical trajectory calculations of the rate of collisional energy transfer between a bath gas and ...
[[abstract]]The vibrational energy dependence, H and D atom isotope effects, and the mass effects in...
[[abstract]]A simple method to generate and characterize a pure highly vibrationally excited azulene...
Part of the Biochemistry Commons, and the Chemistry Commons This Dissertation is brought to you for ...
Expressions are deduced to enable the mean energy transferred in collisions between a highly excited...
Can a molecule be efficiently activated with a large amount of energy in a single collision with a f...
Author Institution: Department of Chemistry, Temple University; Philadelphia, Pennsylvania 19122, US...
Classical trajectory calculations were performed to simulate state-resolved energy transfer experime...
The collisional relaxation of highly excited molecules plays a very important role in many chemistry...
The method of obtaining collisional energy transfer data for collissions between a highly excited po...