Erlangen
8 Papers
31 Citations
Erlangen is an academic researcher. The author has contributed to research in topics: Ceramic & Computer science. The author has an hindex of 1, co-authored 1 publications.
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Papers
•Journal Article
Light-weight cellular ceramics from biologically-derived preforms
TL;DR: In this paper, cellular ceramics with anisotropic pore structures at the micrometer level were processed by infiltrating liquid metal (silicon) into carbonized wood structures and subsequent reaction into SiC and SiSiC-ceramics at temperatures of 1600°C.
31
Temperature dependence of the magnon-phonon interaction in hybrids of high-overtone bulk acoustic resonators with ferromagnetic thin films
M. Muller,Johannes Weber,Sebastian T. B. Goennenwein,Silvia Viola Kusminskiy,R. Gross,Matthias Althammer,Hans Huebl Walther-Meissner-Institut,Bayerische Akademie der Wissenschaften,Garching,Germany,Tech. U. Munich,Tum School of Life Sciences,Physics Department,D. Physics,University of Konstanz,Konstanz,Institute for Theoretical Physics,Rwth Aachen,52056 Aachen,M. Light,Erlangen,Munich Center for Quantum Science,Technology,81679 Munich +23 more
TL;DR: Tailored magnon-phonon hybrid systems exhibit strong coupling and low damping at cryogenic temperatures, reaching cooperativity $C\approx 1$.
1
Anisotropic molecular diffusion in confinement II: A model for structurally complex particles applied to transport in thin ionic liquid films
Kevin Hollring,Andreas Baer,David M. Smith,Institute for Particle Physics,Fau Erlangen-Nurnberg,Erlangen,Germany,D. Chemistry,Rudjer Bovskovi'c Institute,Zagreb,Croatia +10 more
- 26 Jun 2023
TL;DR: In this article , the spatially dependent diffusion coefficient, parallel and perpendicular to interfaces, has been resolved by using a model built on the $2$-dimensional Smoluchowski equation and systematic coarse-graining.
Electric dipole polarizability of $^{40}$Ca
R. W. Fearick,P. von Neumann-Cosel,Sonia Bacca,J. Birkhan,F. Bonaiti,Ines Brandherm,Gaute Hagen,Hiroshi Matsubara,Witold Nazarewicz,Norbert Pietralla,V. Yu. Ponomarev,Paul-Gerhard Reinhard,Xavier Roca-Maza,Andreas Richter,Achim Schwenk,J. Simonis,A. T. D. O. Physics,U. C. Town,Rondebosch,South Africa,I. F. Kernphysik,Technische Universitat Darmstadt,Darmstadt,German,Prisma Cluster of Excellence,Mainz,Helmholtz-Institut Mainz,Johannes Gutenberg-Universität Mainz,P. Division,Oak Ridge National Laboratory,Oak Ridge,Tennessee,Usa,D. Physics,Astronomy,U Tennessee,Knoxville,R. I. F. Physics,O. University,Ibaraki,Osaka,Japan.,Faculty of Information Technology,Fujita Health University,Aichi,Facility for Rare Isotope Beams,M. University,E. Lansing,Michigan,I. Physik,Universitätsklinikum Erlangen,Erlangen,Dipartimento Di Fisica,U. D. S. D. Milano,Milano,Italy.,Infn,Sezione di Milano,E. Emmi,Gsi GmbH,Max-Planck-Institut für Kernphysik,Heidelberg +61 more
- 15 Feb 2023
TL;DR: In this paper , the electric dipole strength distribution in the medium-mass region was determined at RCNP, Osaka, from proton inelastic scattering experiments at very forward angles.
Chiral phonons and phononic birefringence in ferromagnetic metal - bulk acoustic resonator hybrids
M. Muller,J. Weber,F. Engelhardt,Victor A. S. V. Bittencourt,Thomas Luschmann,M. A. Cherkasskii,Sebastian T. B. Goennenwein,Silvia Viola Kusminskiy,S. Geprags,R. Gross,Matthias Althammer,Hans Huebl Walther-Meissner-Institut,Bayerische Akademie der Wissenschaften,Garching,German,Tech. U. Munich,Tum School of Life Sciences,Physics Department,M. Light,Erlangen,D. Physics,U. Erlangen-Nuremberg,Institute for Theoretical Physics,R. University,Aachen,Isis,U. Strasbourg,Strasbourg,France.,Munich Center for Quantum Science,Technology,Munchen,University of Konstanz,Konstanz +33 more
- 15 Mar 2023
TL;DR: In this paper , the magnetoelastic coupling between the ferromagnetic resonance (FMR) modes in a metallic Co$25$Fe$75}$ thin film, featuring ultra-low magnetic damping as well as sizable magnetostriction, and standing transverse elastic phonon modes in sapphire, silicon and gadolinium gallium garnet by performing broadband FMR spectroscopy at cryogenic temperatures.