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Hendrik Poulsen Nautrup

Explore the profile of Hendrik Poulsen Nautrup including associated specialties, affiliations and a list of published articles. Areas
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Articles 6
Citations 41
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Recent Articles
1.
Smith I, Nautrup H, Briegel H
Phys Rev Lett . 2024 Jun; 132(22):220602. PMID: 38877952
We show that universal parity quantum computing employing a recently introduced constant depth decoding procedure is equivalent to measurement-based quantum computation (MBQC) on a bipartite graph using only yz-plane measurements....
2.
Jerbi S, Fiderer L, Nautrup H, Kubler J, Briegel H, Dunjko V
Nat Commun . 2023 Jan; 14(1):517. PMID: 36720861
Machine learning algorithms based on parametrized quantum circuits are prime candidates for near-term applications on noisy quantum computers. In this direction, various types of quantum machine learning models have been...
3.
Erhard A, Nautrup H, Meth M, Postler L, Stricker R, Stadler M, et al.
Nature . 2021 Jan; 589(7841):220-224. PMID: 33442044
The development of quantum computing architectures from early designs and current noisy devices to fully fledged quantum computers hinges on achieving fault tolerance using quantum error correction. However, these correction...
4.
Raussendorf R, Okay C, Wang D, Stephen D, Nautrup H
Phys Rev Lett . 2019 Apr; 122(9):090501. PMID: 30932542
We provide the first example of a symmetry protected quantum phase that has universal computational power. This two-dimensional phase is protected by one-dimensional linelike symmetries that can be understood in...
5.
Melnikov A, Nautrup H, Krenn M, Dunjko V, Tiersch M, Zeilinger A, et al.
Proc Natl Acad Sci U S A . 2018 Jan; 115(6):1221-1226. PMID: 29348200
How useful can machine learning be in a quantum laboratory? Here we raise the question of the potential of intelligent machines in the context of scientific research. A major motivation...
6.
Nautrup H, Friis N, Briegel H
Nat Commun . 2017 Nov; 8(1):1321. PMID: 29109426
Topological error correction codes are promising candidates to protect quantum computations from the deteriorating effects of noise. While some codes provide high noise thresholds suitable for robust quantum memories, others...