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We propose and analyze a scalable and fully autonomous scheme for preparing spatially distributed multiqubit entangled states in a dual-rail waveguide QED setup. In this approach, arrays of qubits
 
 
The Transregional Collaborative Research Center ’Constrained Quanutum Matter (ConQuMat)’ is based on the recent advances in the understanding of the organizing principles of quantum matter, alongside
 
 
WALTHER–MEIßNER–INSTITUT Bayerische Akademie der Wissenschaften Lehrstuhl für Technische Physik E23, Technische Universität München Prof. Dr. Rudolf Gross Tel.: +49 (0)89 289 14249 E-mail:
 
 
Chapter 1 Macroscopic Quantum Phenomena R. Gross, A. Marx , F. Deppe, and K. Fedorov © Walther-Meißner-Institut (2001 - 2020) I. Foundations of the Josephson Effect 1. Macroscopic Quantum
 
 
Spin-based information processing is a viable alternative to charge-based approaches, enabling low-power devices. In magnetically ordered systems, spin information can be transported via the
 
 
| V. Ramírez-Valle, A. Lerf, F.E. Wagner, J. Poyato, J.L. Pérez-Rodríguez
 
 
As systems for quantum computing keep growing in size and number of qubits, challenges in scaling the control capabilities are becoming increasingly relevant. Efficient schemes to simultaneously
 
 
Physik der Kondensierten Materie 1 Rudolf Gross WS 2020/2021 W I M Teil 9 Vorlesungsstunde: 01.12.2020 1 Zusammenfassung: Teil 8, 26.11.2020/1 • Verhalten von Festkörpern unter Wirkung von
 
 
Prof. Dr. Andreas Erb  works now for more than 30 years in the field of crystal growth and material science. His main interests are in the field of crystal growth of complicated oxide materials
 
 
Florian Kretschmar was member of the Gross group at WMI as a Ph.D. student between February 2010 and December 2014. Ph.D. Thesis: Nematic Fluctuations, Fermiology and the Pair Breaking Potential in
 
 
WALTHER–MEIßNER–INSTITUT Bayerische Akademie der Wissenschaften Lehrstuhl für Technische Physik E23, Technische Universität München Prof. Dr. Rudolf Gross Tel.: +49 (0)89 289 14249 E-mail:
 
 
One main limiting factor towards achieving high coherence times in superconducting circuits is two level system (TLS) losses. Mitigating such losses requires controlling the formation of native
 
 
Research paper featured in "Physics": 'Niobium air bridges as low-loss components for superconducting quantum hardware' by Bruckmoser et al.
 
 
Building and operating a quantum processor based on superconducting qubits to tackle problems that are not solvable by a classical computer is the main objective of this effort. We pursue this goal
 
 
Walther-Meißner-Institut Bayerische Akademie der Wissenschaften SS 2025 Walther-Meißner-Seminar Seminar Room 143 Date: Tuesday, 13 May 2025, 10:15 h Speaker: Dongwook Go Peter Grünberg Institut,
 
 
We study the interaction of surface acoustic waves (SAWs) with spin waves (SWs) in a Co40Fe40B20/Au/Ni81Fe19 system composed of two ferromagnetic layers separated by a nonmagnetic Au spacer layer.
 
 
Aluminum nitride (AlN) is an emerging material for integrated quantum photonics due to its large χ(2) nonlinearity. Here we demonstrate the hybrid integration of AlN on silicon nitride (SiN) photonic
 
 
| Prokofiev, A.; Custers, J.; Kriegisch, M.; Laumann, S.; Mueller, M.; Sassik, H.; Svagera, R.; Waas, M.; Neumaier, K.; Strydom, A. M.; Paschen, S.
 
 
Walther-Meißner-Institut Bayerische Akademie der Wissenschaften SS 2023 Walther-Meißner-Seminar Walther-Meißner-Institute, Seminar Room 143 Date: Monday, 18 September 2023, 15:15 h Speaker: Dr.
 
 
In the present work, a detailed field dependence of the resistivity of Ni75Co25 and Ni40Co60 bulk alloys was measured at T = 3 K and 300 K up to high magnetic fields. The focus of the study was to
 
 
| Mathias Weiler, Franz D. Czeschka, Inga-Mareen Imort, Günter Reiss, Andy Thomas, Georg Woltersdorf, Rudolf Gross Sebastian T. B. Goennenwein
 
 
| Yu. A. Ossipyan, N. S. Sidorov, A. V. Palnichenko, O. M. Vyaselev, M. V. Kartsovnik, M. Opel, V. V. Avdonin, D. V. Shakhrai, V. E. Fortov
 
 
| S. de Jong, E. van Heumen, S. Thirupathaiah, R. Huisman, F. Massee, J. B. Goedkoop, R. Ovsyannikov, J. Fink, H. A. Duerr, A. Gloskovskii, H.S. Jeevan, P. Gegenwart, A. Erb, L. Patthey, M. Shi, R.
 
 
| Gruber, Kathrin; Rohr, Carsten; Scherer, Lukas J.; Malarek, Michael S.; Constable, Edwin C.; Hermann, Bianca A.
 
 
| AGGARWAL, K; LITTERST, FJ; KALVIUS, GM; OLBERDING, W; LERF, A; BIBERACHER, W
 
 
Dieter Andres was member of the Gross group at WMI as Ph.D. student between 2000 and 2005. Ph.D. Thesis: Effects of high magnetic fields and hydrostatic pressure on the low temperature density
 
 
We present small-angle neutron scattering studies of the magnetic vortex lattice (VL) in Ca0.04Y0.96Ba2Cu3O7 up to a field of 16.7 T and Ca0.15Y0.85Ba2Cu3O7 up to 25 T to investigate the general
 
 
Walther-Meißner-Institut Bayerische Akademie der Wissenschaften SS 2023 Walther-Meißner-Seminar Walther-Meißner-Institute, Seminar Room 143/039 Date: Friday, 16 June 2023, 11:15 h Speaker: PD
 
 
| B. Muschler, W. Prestel, L. Tassini, R. Hackl, M. Lambacher, A. Erb, Seiki Komiya, Yoichi Ando, D.C. Peets, W.N. Hardy, R. Liang, and D.A. Bonn
 
 
| C. Pfleiderer , T. Adams , A. Bauer , W. Biberacher , B. Binz , F. Birkelbach , P. Böni , C. Franz , R. Georgii , M. Janoschek , F. Jonietz , T. Keller , R. Ritz , S. Mühlbauer , W. Münzer , A.
 
 
| F. Venturini, M. Opel, T.P. Devereaux, J.K. Freericks, Tütto, B. Revaz, E. Walker, H. Berger, L. Forró & R. Hackl
 
 
| M. Lavagnini, F. Pfuner, R. Monnier, L. Degiorgi, H.-M. Eiter, L. Tassini, B. Muschler, R. Hackl, J.-H. Chu, N. Ru, K.Y. Shin, I.R. Fisher,
 
 
| Kargl, V.; Mirmelstein, A.; Boeni, P.; Sheptyakov, D.; Amato, A.; Kazakov, S.; Karpinski, J.; Erb, A.
 
 
| Hackl, R; Krug, G; Nemetschek, R; Opel, M; Stadlober, B
 
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