Projects per year
Abstract
Quantum correlations are a vital resource in advanced information processing based on quantum phenomena. Remarkably, the vacuum state of a quantum field may act as a key element for the generation of multipartite quantum entanglement. In this work, generation of genuine tripartite entangled state and its control is achieved by the use of the phase difference between two continuous pump tones. Control of the subspaces of the covariance matrix for tripartite bisqueezed state is demonstrated. Furthermore, by optimizing the phase relationships in a three-tone pumping scheme genuine quadripartite entanglement of a generalized H-graph state (H-graph) is explored. This scheme provides a comprehensive control toolbox for the entanglement structure and allows to demonstrate, for first time to the authors' knowledge, genuine quadripartite entanglement of microwave modes. All experimental results are verified with numerical simulations of the nonlinear quantum Langevin equation. It is envisioned that quantum resources facilitated by multi-pump configurations offer enhanced prospects for quantum data processing using parametric microwave cavities.
Original language | English |
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Article number | 2200031 |
Number of pages | 19 |
Journal | Advanced Quantum Technologies |
Volume | 6 |
Issue number | 1 |
Early online date | 17 Oct 2022 |
DOIs | |
Publication status | Published - Jan 2023 |
MoE publication type | A1 Journal article-refereed |
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Dive into the research topics of 'Generation and Structuring of Multipartite Entanglement in a Josephson Parametric System'. Together they form a unique fingerprint.Projects
- 4 Finished
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QUARTET: Quantum readout techniques and technologies
Paraoanu, G., Khalifa, H., Petrovnin, K. & Rapinoja De Carvalho, A.
15/10/2019 → 30/04/2023
Project: EU: Framework programmes funding
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Finnish Centre of Excellence in Quantum Technology
Hakonen, P., Elo, T., Kumar, M. & Suresh, K.
01/01/2018 → 31/12/2020
Project: Academy of Finland: Other research funding
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Finnish Centre of Excellence in Quantum Technology
Paraoanu, G., Dogra, S., Petrovnin, K., Lan, D., McCord, J. & Cattaneo, M.
01/01/2018 → 31/12/2020
Project: Academy of Finland: Other research funding
Press/Media
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Data from Aalto University Provide New Insights into Quantum Technology (Generation and Structuring of Multipartite Entanglement In a Josephson Parametric System)
Gheorghe-Sorin Paraoanu & Pertti J. Hakonen
11/11/2022
1 item of Media coverage
Press/Media: Media appearance