507 citations · 1.7k across the 26 of their papers we have counts for
15 papers · 1 filter
Single-Particle Decoherence Can Improve Spin-Squeezing Generated In Collective Dynamics
K. Tucker, D. Barberena, R. J. Lewis-Swan +3
We study the generation of spin-squeezing in arrays of long-lived dipoles subject to collective emission, coherent drive, elastic interactions, and spontaneous emission. Counter-in…
Generating multipartite spin states with fermionic atoms in a driven optical lattice
Mikhail Mamaev, Ana Maria Rey
We propose a protocol for generating generalized GHZ states using ultracold fermions in 3D optical lattices or optical tweezer arrays. The protocol uses the interplay between laser…
Subradiance of multilevel fermionic atoms in arrays with filling
A. Piñeiro Orioli, A. M. Rey
We investigate the subradiance properties of multilevel fermionic atoms loaded into the lowest motional level of a single trap (e.g.~a single optical lattice site or an o…
A cavity-QED protocol for precise field sensing in the optical domain
Robert J. Lewis-Swan, D. Barberena, Juan A. Muniz +4
In the context of quantum metrology, optical cavity-QED platforms have primarily been focused on the generation of entangled atomic spin states useful for next-generation frequency…
Dynamics of quantum information
R. J. Lewis-Swan, A. Safavi-Naini, A. M. Kaufman +1
The ability to harness the dynamics of quantum information and entanglement is necessary for the development of quantum technologies and the study of complex quantum systems. On th…
Variational spin-squeezing algorithms on programmable quantum sensors
Raphael Kaubruegger, Pietro Silvi, Christian Kokail +5
Arrays of atoms trapped in optical tweezers combine features of programmable analog quantum simulators with atomic quantum sensors. Here we propose variational quantum algorithms,…