most citedOverview of projective quantum measurements

1 citations · 1 across the 7 of their papers we have counts for

collaborators

7 papers

quant-ph2024

Dissipative Dynamical Phase Transition as a Complex Ising Model

Stephen W. Yan, Diego Barberena, Matthew P. A. Fisher +1

We investigate a quantum dynamical phase transition induced by the competition between local unitary evolution and dissipation in a qubit chain with a strong, on-site $\mathbb{Z}_2…

quant-ph2024

Postselection in lattice bosons undergoing continuous measurements

Diego Barberena, Matthew P. A. Fisher

We study in detail the postselection problem in a specific model: bosons hopping on a lattice subjected to continuous local measurements of quadrature observables. We solve the mod…

quant-ph2024

A dissipation-induced superradiant transition in a strontium cavity-QED system

Eric Yilun Song, Diego Barberena, Dylan J. Young +7

In cavity quantum electrodynamics (QED), emitters and a resonator are coupled together to enable precise studies of quantum light-matter interactions. Over the past few decades, th…

cond-mat.quant-gas2024

Time-resolved pairing gap spectroscopy in a quantum simulator of fermionic superfluidity inside an optical cavity

Dylan J. Young, Eric Yilun Song, Anjun Chu +6

We use an ensemble of laser-cooled strontium atoms in a high-finesse cavity to cleanly emulate the technique of rf spectroscopy employed in studies of BEC-BCS physics in fermionic…

quant-ph20241 cited

Overview of projective quantum measurements

Diego Barberena, Aaron J. Friedman

We provide an overview of standard "projective" quantum measurements with the goal of elucidating connections between theory and experiment. We make use of a unitary "Stinespring"…

cond-mat.quant-gas2023

Spin squeezing in mixed-dimensional anisotropic lattice models

Mikhail Mamaev, Diego Barberena, Ana Maria Rey

We describe a theoretical scheme for generating scalable spin squeezing with nearest-neighbour interactions between spin-1/2 particles in a 3D lattice, which are naturally present…