activity
20172020
most citedCavity QED engineering of spin dynamics and squeezing in a spinor gas

73 citations · 73 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph2020

Superradiant Switching, Quantum Hysteresis, and Oscillations in a Generalized Dicke Model

Kevin Stitely, Stuart J Masson, Andrus Giraldo +2

We demonstrate quantum signatures of deterministic nonlinear dynamics in the transition to superradiance of a generalized open Dicke model with different coupling strengths for the…

quant-ph2019

Atomic-waveguide quantum electrodynamics

Stuart J Masson, Ana Asenjo-Garcia

Atom arrays are a new type of quantum light-matter interface. Here, we propose to employ one-dimensional ordered arrays as atomic waveguides. These arrays support optical guided mo…

quant-ph2018

Extreme spin squeezing in the steady state of a generalized Dicke model

Stuart J Masson, Scott Parkins

We present a scheme to generate steady-state atomic spin squeezing in a cavity QED system using cavity-mediated Raman transitions to engineer effective atom-photon interactions, wh…

quant-ph2018

Preparing the spin-singlet state of a spinor gas in an optical cavity

Stuart J Masson, Scott Parkins

We propose a method to prepare the spin singlet in an ensemble of integer-spin atoms confined within a high-finesse optical cavity. Using a cavity-assisted Raman transition to prod…

quant-ph2018

Rapid production of many-body entanglement in spin-1 atoms via cavity output photon counting

Stuart J Masson, Scott Parkins

We propose a simple and efficient method for generating metrologically useful quantum entanglement in an ensemble of spin-1 atoms that interacts with a high-finesse optical cavity…

quant-ph201773 cited

Cavity QED engineering of spin dynamics and squeezing in a spinor gas

Stuart J. Masson, M. D. Barrett, Scott Parkins

We propose a method for engineering spin dynamics in ensembles of integer-spin atoms confined within a high-finesse optical cavity. Our proposal uses cavity-assisted Raman transiti…