AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia molecules can be controlled as molecules pass out of a quadrupole guide and through different electric field regions is examined. Ammonia molecules are collisionally cooled in a buffer gas cell, and are subsequently guided by a three-bend electrostatic quadrupole into a detection chamber. The orientation of ammonia molecules is probed using (2+1) resonance-enhanced multiphoton ionisation (REMPI), with the laser polarisation axis aligned both parallel and perpendicular to the time-of-flight axis. Even with the presence of a near-zero field region, the ammonia REMPI spectra indicate some retention of orientation. Monte Carlo simulations propagat...
A decelerated beam of neutral ammonia molecules is injected into an electrostatic storage ring. Elec...
We present a theoretical study of vibrationally resolved photoelectron angular distributions for amm...
Doctor of PhilosophyDepartment of PhysicsVinod KumarappanIn general, molecules in the gas phase are ...
AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia m...
The extent to which the spatial orientation of internally and translationally cold ammonia molecules...
Abstract External fields have been widely adopted to control and manipulate the prope...
A pedagogic review of technology used to orient polar molecules is presented to place in context the...
Doctor of PhilosophyDepartment of PhysicsVinod KumarappanIn this thesis, our work on developing new ...
This thesis describes the design, construction, operation, and characterisation of an experimental a...
We report measurements of linear and circular fluorescence polarizations for molecular transitions i...
Cold molecules are potentially beneficial for several areas of research. They have applications in s...
Molecules are relentlessly dynamic – vibrating, cartwheeling, and zigzagging in a restless hustle. I...
This thesis describes the effect of an electric field on the interaction between rubidium and ammoni...
Electric and magnetic field gradients, arising from sufficiently strong anisotropic intermolecular f...
Electron-ion-ion coincidence measurements carried out at discrete resonances near the N 1s threshold...
A decelerated beam of neutral ammonia molecules is injected into an electrostatic storage ring. Elec...
We present a theoretical study of vibrationally resolved photoelectron angular distributions for amm...
Doctor of PhilosophyDepartment of PhysicsVinod KumarappanIn general, molecules in the gas phase are ...
AbstractThe extent to which the spatial orientation of internally and translationally cold ammonia m...
The extent to which the spatial orientation of internally and translationally cold ammonia molecules...
Abstract External fields have been widely adopted to control and manipulate the prope...
A pedagogic review of technology used to orient polar molecules is presented to place in context the...
Doctor of PhilosophyDepartment of PhysicsVinod KumarappanIn this thesis, our work on developing new ...
This thesis describes the design, construction, operation, and characterisation of an experimental a...
We report measurements of linear and circular fluorescence polarizations for molecular transitions i...
Cold molecules are potentially beneficial for several areas of research. They have applications in s...
Molecules are relentlessly dynamic – vibrating, cartwheeling, and zigzagging in a restless hustle. I...
This thesis describes the effect of an electric field on the interaction between rubidium and ammoni...
Electric and magnetic field gradients, arising from sufficiently strong anisotropic intermolecular f...
Electron-ion-ion coincidence measurements carried out at discrete resonances near the N 1s threshold...
A decelerated beam of neutral ammonia molecules is injected into an electrostatic storage ring. Elec...
We present a theoretical study of vibrationally resolved photoelectron angular distributions for amm...
Doctor of PhilosophyDepartment of PhysicsVinod KumarappanIn general, molecules in the gas phase are ...