activity
20182021
most citedA Polariton-Stabilized Spin Clock

1 citations · 2 across the 2 of their papers we have counts for

collaborators

5 papers

physics.atom-ph2021

Spin-Wave Quantum Computing with Atoms in a Single-Mode Cavity

Kevin C. Cox, Przemyslaw Bienias, David H. Meyer +3

We present a method for network-capable quantum computing that relies on holographic spin-wave excitations stored collectively in ensembles of qubits. We construct an orthogonal ba…

physics.atom-ph20211 cited

Linear and continuous variable spin-wave processing using a cavity-coupled atomic ensemble

Kevin C. Cox, Przemyslaw Bienias, David H. Meyer +3

Spin-wave excitations in ensembles of atoms are gaining attention as a quantum information resource. However, current techniques with atomic spin waves do not achieve universal qua…

physics.atom-ph2021

Optimal Atomic Quantum Sensing using EIT Readout

David H. Meyer, Chistopher O'Brien, Donald P. Fahey +2

Quantum sensors offer the capability to reach unprecedented precision by operating at the standard quantum limit (SQL) or beyond by using quantum entanglement. But an emerging clas…

quant-ph20201 cited

A Polariton-Stabilized Spin Clock

Matthew E. Trusheim, Kurt Jacobs, Jonathan E. Hoffman +3

Atom-like quantum systems in solids have been proposed as a compact alternative for atomic clocks, but realizing the potential of solid-state technology will requires an architectu…

cond-mat.quant-gas2018

A spinor Bose-Einstein condensate phase-sensitive amplifier for SU(1,1) interferometry

J. P. Wrubel, A. Schwettmann, D. P. Fahey +6

The SU(1,1) interferometer was originally conceived as a Mach-Zehnder interferometer with the beam-splitters replaced by parametric amplifiers. The parametric amplifiers produce st…