activity
20182024
most citedTime-reversed and coherently-enhanced memory: A single-mode quantum atom-optic memory without a cavity

10 citations · 10 across the 2 of their papers we have counts for

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5 papers · 1 filter

quant-ph2024

Dual axis atomic magnetometer and gyroscope enabled by nuclear spin perturbation

Morgan Hedges, Ankit Papneja, Karun Paul +1

Alkali-noble-gas comagnetometers have become an essential tool for tests of fundamental physics and offer a compact platform for precision gyroscopy. They are, however, limited by…

quant-ph2022

Efficient, ever-ready quantum memory at room temperature for single photons

Anthony C. Leung, W. Y. Sarah Lau, Aaron D. Tranter +6

Efficient quantum memories will be an essential building block of large scale networked quantum systems and provide a link between flying photonic qubits and atomic or quasi-atomic…

quant-ph201910 cited

Time-reversed and coherently-enhanced memory: A single-mode quantum atom-optic memory without a cavity

Jesse L. Everett, Pierre Vernaz-Gris, Geoff T. Campbell +5

The efficiency of an ensemble-based optical quantum memory depends critically on the strength of the atom-light coupling. An optical cavity is an effective method to enhance atom-l…

quant-ph2018

High-performance Raman memory with spatio-temporal reversal

Pierre Vernaz-Gris, Aaron D. Tranter, Jesse L. Everett +5

A number of techniques exist to use an ensemble of atoms as a quantum memory for light. Many of these propose to use backward retrieval as a way to improve the storage and recall e…

quant-ph2018

Multiparameter optimisation of a magneto-optical trap using deep learning

Aaron D. Tranter, Harry J. Slatyer, Michael R. Hush +7

Many important physical processes have dynamics that are too complex to completely model analytically. Optimisation of such processes often relies on intuition, trial-and-error, or…