Crosstalk suppression of parallel gates for fault-tolerant quantum computation with trapped ions via optical tweezers

L Cheng, SC Liu, LY Peng, Q Gong - Physical Review Applied, 2024 - APS
The ability to perform entangling operations in parallel with a low error is essential for a
large-scale fault-tolerant quantum computer. However, for trapped-ion systems, it is a …

Near-resonant light scattering by an atom in a state-dependent trap

TD Karanikolaou, RJ Bettles… - New Journal of Physics, 2024 - iopscience.iop.org
There are an increasing number of experimental scenarios where near-resonant light is
applied to atoms tightly trapped in far off-resonant optical fields, such as for quantum optics …

Alignment and optimization of optical tweezers on trapped ions

M Mazzanti, C Robalo Pereira, NA Diepeveen… - Physical Review A, 2024 - APS
This paper presents a routine to align an optical tweezer on a single trapped ion and use the
ion as a probe to characterize the tweezer. We find a smallest tweezer waist of 2.3 (2) µ m …

State-dependent control of the motional modes of trapped ions using an integrated optical lattice

AR Vasquez, C Mordini, D Kienzler, J Home - arXiv preprint arXiv …, 2024 - arxiv.org
In this work we study the interaction of trapped ions with a state-dependent, high-intensity
optical lattice formed above an ion trap chip using integrated photonics. We use a single ion …

From an Optical Magnus Effect to a Novel Quantum Gate

RJC Spreeuw, ZED Ackerman, LPH Gallagher… - Quantum 2.0, 2024 - opg.optica.org
From an Optical Magnus Effect to a Novel Quantum Gate Page 1 From an Optical Magnus Effect
to a Novel Quantum Gate RJC Spreeuw,1,2,* ZED Ackerman,1 LPH Gallagher,1 M. Mazzanti,1 …