most citedUltrafast, high repetition rate, ultraviolet, fiber based laser source: application towards Yb+ fast quantum-logic

15 citations · 15 across the 1 of their papers we have counts for

collaborators

5 papers

quant-ph2017

Scaling Trapped Ion Quantum Computers Using Fast Gates and Microtraps

Alexander K. Ratcliffe, Richard L. Taylor, André R. R. Carvalho +1

Most attempts to produce a scalable quantum information processing platform based on ion traps have focused on the shuttling of ions in segmented traps. We show that an architectur…

quant-ph2016

Nanomechanical sensing using spins in diamond

Michael S. J. Barson, Phani Peddibhotla, Preeti Ovartchaiyapong +15

Nanomechanical sensors and quantum nanosensors are two rapidly developing technologies that have diverse interdisciplinary applications in biological and chemical analysis and micr…

physics.optics2016★ 15 cited

Ultrafast, high repetition rate, ultraviolet, fiber based laser source: application towards Yb+ fast quantum-logic

Mahmood Irtiza Hussain, Matthew Joseph Petrasiunas, Christopher D. B. Bentley +6

Trapped ions are one of the most promising approaches for the realization of a universal quantum computer. Faster quantum logic gates could dramatically improve the performance of…

quant-ph2016

Stability thresholds and calculation techniques for fast entangling gates on trapped ions

C D B Bentley, R L Taylor, A R R Carvalho +1

Fast entangling gates have been proposed for trapped ions that are orders of magnitude faster than current implementations. We present here a detailed analysis of the challenges in…

quant-ph2016

A Study on Fast Gates for Large-Scale Quantum Simulation with Trapped Ions

R. L. Taylor, C. D. B. Bentley, J. S. Pedernales +4

Large-scale digital quantum simulations require thousands of fundamental entangling gates to construct the simulated dynamics. Despite success in a variety of small-scale simulatio…