Area of research
Atomic and Molecular Physics, and Optics
Research interest
Research interests include Physics, Magnetometer, Ultracold neutrons, Neutron electric dipole moment, Neutron, and Axion.
What Can a GNOME Do? Search Targets for the Global Network of Optical Magnetometers for Exotic Physics Searches
Search for topological defect dark matter with a global network of optical magnetometers
Measurement of the Permanent Electric Dipole Moment of the Neutron
A search for neutron to mirror-neutron oscillations using the nEDM apparatus at PSI
Optically pumped Cs magnetometers enabling a high-sensitivity search for the neutron electric dipole moment
The n2EDM experiment at the Paul Scherrer Institute
nEDM experiment at PSI: Data-taking strategy and sensitivity of the dataset
Characterization of the global network of optical magnetometers to search for exotic physics (GNOME)
Searching for axion stars and <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>Q</mml:mi></mml:math>-balls with a terrestrial magnetometer network
Demonstration of sensitivity increase in mercury free-spin-precession magnetometers due to laser-based readout for neutron electric dipole moment searches
Search for axionlike dark matter through nuclear spin precession in electric and magnetic fields
Constraining interactions mediated by axion-like particles with ultracold neutrons
Measurement of a false electric dipole moment signal from 199Hg atoms exposed to an inhomogeneous magnetic field
Gravitational depolarization of ultracold neutrons: Comparison with data
Design and performance of an absolute <sup>3</sup>He/Cs magnetometer
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Investigation of the intrinsic sensitivity of a 3He/Cs magnetometer
Dynamic stabilization of the magnetic field surrounding the neutron electric dipole moment spectrometer at the Paul Scherrer Institute
A measurement of the neutron to 199 Hg magnetic moment ratio
Development of a 3He magnetometer for a neutron electric dipole moment experiment