78 citations · 111 across the 3 of their papers we have counts for
4 papers
A Quantum von Neumann Architecture for Large-Scale Quantum Computing
Matthias F. Brandl
As the size of quantum systems becomes bigger, more complicated hardware is required to control these systems. In order to reduce the complexity, I discuss the amount of parallelis…
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…
Cryogenic resonator design for trapped ion experiments in Paul traps
Matthias F. Brandl, Philipp Schindler, Thomas Monz +1
Trapping ions in Paul traps requires high radio-frequency voltages, which are generated using resonators. When operating traps in a cryogenic environment, an in-vacuum resonator sh…
Realization of a scalable Shor algorithm
Thomas Monz, Daniel Nigg, Esteban A. Martinez +6
Quantum computers are able to outperform classical algorithms. This was long recognized by the visionary Richard Feynman who pointed out in the 1980s that quantum mechanical proble…