arrow
Return

A universal qudit quantum processor with trapped ions

delete2022-07-21
delete149
PRE
AI
M
Martin Ringbauer *
M
M. Meth
L
Lukas Postler
R
Roman Stricker
R
R. Blatt
P
Philipp Schindler
T
Thomas Monz
DOI:10.1038/s41567-022-01658-0delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Most quantum computers use binary encoding to store information in qubits-the quantum analogue of classical bits. Yet, the underlying physical hardware consists of information carriers that are not necessarily binary, but typically exhibit a rich multilevel structure. Operating them as qubits artificially restricts their degrees of freedom to two energy levels(1). Meanwhile, a wide range of applications-from quantum chemistry(2) to quantum simulation(3)-would benefit from access to higher-dimensional Hilbert spaces, which qubit-based quantum computers can only emulate(4). Here we demonstrate a universal quantum processor using trapped ions that act as qudits with a local Hilbert-space dimension of up to seven. With a performance similar to qubit quantum processors(5), this approach enables the native simulation of high-dimensional quantum systems(3), as well as more efficient implementation of qubit-based algorithms(6,7).
Keywords:
DYNAMICS

Journal

Nature Physics cover
Nature Physics
IF:
18.4
Papers:
6.7K
Citations:
5.7W

Organization

U
University of Innsbruck
Scholars:
9.8K
Papers: 8.6K
Citations: 8