We study collisions between neutral, deuterated ammonia molecules (ND3) stored in a 50 cm diameter synchrotron and argon atoms in copropagating supersonic beams. The advantages of using a synchrotron in collision studies are twofold: (i) By storing ammonia molecules many round-Trips, the sensitivity to collisions is greatly enhanced; (ii) the collision partners move in the same direction as the stored molecules, resulting in low collision energies. We tune the collision energy in three different ways: by varying the velocity of the stored ammonia packets, by varying the temperature of the pulsed valve that releases the argon atoms, and by varying the timing between the supersonic argon beam and the stored ammonia packets. These give consist...
We carry out quantum inelastic scattering calculations of collisions of Rb atoms with inverting NH3 ...
We present an experimental and theoretical study of atom-molecule collisions in a mixture of cold, t...
We present a design for an atomic synchrotron consisting of 40 hybrid magnetic hexapole lenses arran...
We study collisions between neutral, deuterated ammonia molecules (ND_{3}) stored in a 50 cm diamete...
Abstract We have recently demonstrated a general and sensitive method to study low energy collisions...
We have developed an experiment for the investigation of neutral molecular collisions in the gas pha...
Author Institution: Chemistry Research Laboratory, University of Oxford, Mansfield Road, Oxford, Uni...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210-1106, USAWe...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Contains fulltext : 181884.pdf (preprint version ) (Open Access) ...
International audienceAbstract Ammonia (NH3) is the first polyatomic molecule detected in the inters...
A molecular synchrotron offers unique possibilities to study molecular collisions at low energies. F...
International audienceContext: Doubly deuterated ammonia has been found in various dense interstella...
This thesis describes the development and demonstration of techniques for the study of ion-neutral ...
We present an experimental and theoretical study of atom-molecule collisions in a mixture of cold, t...
We carry out quantum inelastic scattering calculations of collisions of Rb atoms with inverting NH3 ...
We present an experimental and theoretical study of atom-molecule collisions in a mixture of cold, t...
We present a design for an atomic synchrotron consisting of 40 hybrid magnetic hexapole lenses arran...
We study collisions between neutral, deuterated ammonia molecules (ND_{3}) stored in a 50 cm diamete...
Abstract We have recently demonstrated a general and sensitive method to study low energy collisions...
We have developed an experiment for the investigation of neutral molecular collisions in the gas pha...
Author Institution: Chemistry Research Laboratory, University of Oxford, Mansfield Road, Oxford, Uni...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210-1106, USAWe...
Many of the tools for manipulating the motion of neutral atoms and molecules take their inspiration ...
Contains fulltext : 181884.pdf (preprint version ) (Open Access) ...
International audienceAbstract Ammonia (NH3) is the first polyatomic molecule detected in the inters...
A molecular synchrotron offers unique possibilities to study molecular collisions at low energies. F...
International audienceContext: Doubly deuterated ammonia has been found in various dense interstella...
This thesis describes the development and demonstration of techniques for the study of ion-neutral ...
We present an experimental and theoretical study of atom-molecule collisions in a mixture of cold, t...
We carry out quantum inelastic scattering calculations of collisions of Rb atoms with inverting NH3 ...
We present an experimental and theoretical study of atom-molecule collisions in a mixture of cold, t...
We present a design for an atomic synchrotron consisting of 40 hybrid magnetic hexapole lenses arran...