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quant-ph2022

Geometries and fabrication methods for 3D printing ion traps

A. Quinn, M. Brown, T. J. Gardner +1

The majority of microfabricated ion traps in use for quantum information processing are of the 2D 'surface-electrode' type or of the 3D 'wafer' type. Surface-electrode traps greatl…

quant-ph2021

High-fidelity laser-free universal control of two trapped ion qubits

R. Srinivas, S. C. Burd, H. M. Knaack +9

Universal control of multiple qubits -- the ability to entangle qubits and to perform arbitrary individual qubit operations -- is a fundamental resource for quantum computation, si…

quant-ph2019

Laser-free trapped-ion entangling gates with simultaneous insensitivity to qubit and motional decoherence

R. T. Sutherland, R. Srinivas, S. C. Burd +7

The dominant error sources for state-of-the-art laser-free trapped-ion entangling gates are decoherence of the qubit state and the ion motion. The effect of these decoherence mecha…

quant-ph2018

Trapped-ion spin-motion coupling with microwaves and a near-motional oscillating magnetic field gradient

R. Srinivas, S. C. Burd, R. T. Sutherland +5

We present a new method of spin-motion coupling for trapped ions using microwaves and a magnetic field gradient oscillating close to the ions' motional frequency. We demonstrate an…

quant-ph2018

Versatile laser-free trapped-ion entangling gates

R. T. Sutherland, R. Srinivas, S. C. Burd +6

We present a general theory for laser-free entangling gates with trapped-ion hyperfine qubits, using either static or oscillating magnetic-field gradients combined with a pair of u…