Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Quantum Information and Cryptography, Cold Atom Physics and Bose-Einstein Condensates, Quantum optics and atomic interactions, and Mechanical and Optical Resonators.
Measuring deviations from a perfectly circular cross section of an optical nanofiber at the angstrom scale
Jaynes–Cummings model breaks down when the cavity geometry significantly reduces free-space emission
Roadmap on structured waves
On the simultaneous scattering of two photons by a single two-level atom
Light-Matter Interaction at the Transition between Cavity and Waveguide QED
State-Insensitive Trapping of Alkaline-Earth Atoms in a Nanofiber-Based Optical Dipole Trap
Tailoring Photon Statistics with an Atom-Based Two-Photon Interferometer
Feedback cooling the fundamental torsional mechanical mode of a tapered optical fiber to 30 mK
Beyond the Tavis-Cummings model: Revisiting cavity QED with ensembles of quantum emitters
Coupling a Single Trapped Atom to a Whispering-Gallery-Mode Microresonator
Unraveling Two-Photon Entanglement via the Squeezing Spectrum of Light Traveling through Nanofiber-Coupled Atoms
Observation of Collective Superstrong Coupling of Cold Atoms to a 30-m Long Optical Resonator
Wavelength-scale errors in optical localization due to spin–orbit coupling of light