activity
20182021
most citedUltralong spin coherence times for rubidium atoms in solid parahydrogen via dynamical decoupling

20 citations · 49 across the 4 of their papers we have counts for

collaborators

5 papers

physics.atom-ph20217 cited

Optical and spin-coherence properties of rubidium atoms trapped in solid neon

Ugne Dargyte, David M. Lancaster, Jonathan D. Weinstein

In this work, we measure the properties of ensembles of rubidium atoms trapped in solid neon that are relevant for use as quantum sensors of magnetic fields: the spin coherence of…

physics.atom-ph20215 cited

Radiative properties of rubidium atoms trapped in solid neon and parahydrogen

David M. Lancaster, Ugne Dargyte, Sunil Upadhyay +1

It is known from ensemble measurements that rubidium atoms trapped in solid parahydrogen have favorable properties for quantum sensing of magnetic fields. To use a single rubidium…

physics.atom-ph202020 cited

Ultralong spin coherence times for rubidium atoms in solid parahydrogen via dynamical decoupling

Sunil Upadhyay, Ugne Dargyte, David Patterson +1

Coherence time is an essential parameter for quantum sensing, quantum information, and quantum computation. In this work, we demonstrate electron spin coherence times as long as 0.…

physics.atom-ph201917 cited

Spin coherence and optical properties of alkali-metal atoms in solid parahydrogen

Sunil Upadhyay, Ugne Dargyte, Vsevolod D. Dergachev +5

We present a joint experimental and theoretical study of spin coherence properties of 39K, 85Rb, 87Rb, and 133Cs atoms trapped in a solid parahydrogen matrix. We use optical pumpin…

physics.atom-ph2018

Enhanced spin coherence of rubidium atoms in solid parahydrogen

Sunil Upadhyay, Ugne Dargyte, Robert P. Prater +5

We measure the transverse relaxation of the spin state of an ensemble of ground-state rubidium atoms trapped in solid parahydrogen at cryogenic temperatures. We find the spin depha…