Area of research
Atomic and Molecular Physics, and Optics · Aerospace Engineering
Research interest
Research interests include Atomic and Molecular Physics, Particle accelerators and beam dynamics, Cold Atom Physics and Bose-Einstein Condensates, and Laser-Plasma Interactions and Diagnostics.
Precision spectroscopy of the hyperfine components of the 1S–2S transition in antihydrogen
Be+ assisted, simultaneous confinement of more than 15000 antihydrogen atoms
Evaluation of a caesium fountain frequency standard for antihydrogen spectroscopy
Measurements of Penning-Malmberg trap patch potentials and associated performance degradation
Adiabatic expansion cooling of antihydrogen
Observation of the effect of gravity on the motion of antimatter
Design and performance of a novel low energy multispecies beamline for an antihydrogen experiment
Laser cooling of antihydrogen atoms
Sympathetic cooling of positrons to cryogenic temperatures for antihydrogen production
Author Correction: Investigation of the fine structure of antihydrogen
Investigation of the fine structure of antihydrogen
Characterization of the 1S–2S transition in antihydrogen
Observation of the 1S–2P Lyman-α transition in antihydrogen
Enhanced Control and Reproducibility of Non-Neutral Plasmas
Observation of the hyperfine spectrum of antihydrogen
Antihydrogen accumulation for fundamental symmetry tests
Observation of the 1S–2S transition in trapped antihydrogen
An improved limit on the charge of antihydrogen from stochastic acceleration
Fundamental Tests of Physics with Antihydrogen at ALPHA
DETECTION OF ANTIHYDROGEN ANNIHILATIONS WITH A SI–MICRO–STRIP AND PURE CSI DETECTOR
2016cited by 0position: middle
Antiproton cloud compression in the ALPHA apparatus at CERN
An experimental limit on the charge of antihydrogen
<i>In situ</i> electromagnetic field diagnostics with an electron plasma in a Penning–Malmberg trap
Description and first application of a new technique to measure the gravitational mass of antihydrogen
The ALPHA antihydrogen trapping apparatus
Experimental and computational study of the injection of antiprotons into a positron plasma for antihydrogen production
Silicon vertex detector upgrade in the ALPHA experiment
Autoresonant-spectrometric determination of the residual gas composition in the ALPHA experiment apparatus
Electron plasmas as a diagnostic tool for hyperfine spectroscopy of antihydrogen
Evaporative cooling of antiprotons for the production of trappable antihydrogen