activity
20162021
most citedCryogenic setup for trapped ion quantum computing

78 citations · 84 across the 2 of their papers we have counts for

collaborators

6 papers

quant-ph2021★ 6 cited

Electric field noise in a high-temperature superconducting surface ion trap

Philip C. Holz, Kirill Lakhmanskiy, Dominic Rathje +3

Scaling up trapped-ion quantum computers requires new trap materials to be explored. Here, we present experiments with a surface ion trap made from the high-temperature superconduc…

quant-ph2021

A compact ion-trap quantum computing demonstrator

Ivan Pogorelov, Thomas Feldker, Christian D. Marciniak +13

Quantum information processing is steadily progressing from a purely academic discipline towards applications throughout science and industry. Transitioning from lab-based, proof-o…

quant-ph2020

The Panopticon device: an integrated Paul-trap-hemispherical mirror system for quantum optics

Gabriel Araneda, Giovanni Cerchiari, Daniel B. Higginbottom +5

We present the design and construction of a new experimental apparatus for the trapping of single Ba ions in the center of curvature of an optical-quality hemispherical mirror.…

quant-ph2020

Two-dimensional linear trap array for quantum information processing

Philip C. Holz, Silke Auchter, Gerald Stocker +8

We present an ion-lattice quantum processor based on a two-dimensional arrangement of linear surface traps. Our design features a tunable coupling between ions in adjacent lattice…

physics.atom-ph2018

Observation of superconductivity and surface noise using a single trapped ion as a field probe

K. Lakhmanskiy, P. C. Holz, D. Schärtl +5

Measuring and understanding electric field noise from bulk material and surfaces is important for many areas of physics. In this work, we introduce a method to detect in situ diffe…

quant-ph2016★ 78 cited

Cryogenic setup for trapped ion quantum computing

M. F. Brandl, M. W. van Mourik, L. Postler +15

We report on the design of a cryogenic setup for trapped ion quantum computing containing a segmented surface electrode trap. The heat shield of our cryostat is designed to attenua…