activity
20172021
most citedBang-bang shortcut to adiabaticity in the Dicke model as realized in a Penning trap experiment

47 citations · 88 across the 4 of their papers we have counts for

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7 papers · 1 filter

quant-ph202110 cited

Realization of real-time fault-tolerant quantum error correction

C. Ryan-Anderson, J. G. Bohnet, K. Lee +14

Correcting errors in real time is essential for reliable large-scale quantum computations. Realizing this high-level function requires a system capable of several low-level primiti…

quant-ph2021

Quantum-enhanced sensing of displacements and electric fields with large trapped-ion crystals

Kevin A. Gilmore, Matthew Affolter, Robert J. Lewis-Swan +4

Developing the isolation and control of ultracold atomic systems to the level of single quanta has led to significant advances in quantum sensing, yet demonstrating a quantum advan…

quant-ph2020

Broadening of the drumhead mode spectrum due to in-plane thermal fluctuations of two-dimensional trapped ion crystals in a Penning trap

Athreya Shankar, Chen Tang, Matthew Affolter +5

Two-dimensional crystals of ions stored in Penning traps are a leading platform for quantum simulation and sensing experiments. For small amplitudes, the out-of-plane motion of suc…

quant-ph201947 cited

Bang-bang shortcut to adiabaticity in the Dicke model as realized in a Penning trap experiment

J. Cohn, A. Safavi-Naini, R. J. Lewis-Swan +7

We introduce a bang-bang shortcut to adiabaticity for the Dicke model, which we implement via a 2-D array of trapped ions in a Penning trap with a spin-dependent force detuned clos…

quant-ph2018

Modeling near ground-state cooling of two-dimensional ion crystals in a Penning trap using electromagnetically induced transparency

Athreya Shankar, Elena Jordan, Kevin A. Gilmore +3

Penning traps, with their ability to control planar crystals of tens to hundreds of ions, are versatile quantum simulators. Thermal occupations of the motional drumhead modes, tran…

quant-ph2018

Verification of a many-ion simulator of the Dicke model through slow quenches across a phase transition

A. Safavi-Naini, R. J. Lewis-Swan, J. G. Bohnet +7

We use a self-assembled two-dimensional Coulomb crystal of ions in the presence of an external transverse field to engineer a simulator of the Dicke Hamiltonian, an iconi…