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Bohm, Sebastian; Grunert, Malte; Honig, Hauke; Wang, Dong; Schaaf, Peter; Runge, Erich; Zhong, Jinhui; Lienau, Christoph
Optical properties of nanoporous gold sponges using model structures obtained from three-dimensional phase-field Simulation. - In: 2021 Photonics & Electromagnetics Research Symposium (PIERS), (2021), S. 517-523

Nanoporous sponge structures show fascinating optical properties related to a strong spatial localization of field modes and a resulting strong field enhancement. In this work, a novel efficient method for the generation of three-dimensional nanoporous sponge structures using time-resolved phase-field simulations is presented. The algorithm for creating the geometries and the underlying equations are discussed. Different sponge geometries are generated and compared with sponges that have been experimentally measured using FIB tomography. Meaningful parameters are defined for the comparison of the geometric properties of the random sponge structures. In addition, the optical properties of the simulated sponges are compared with the experimentally measured sponges. It is shown that a description using effective media does not provide a good agreement to the actual spectra. This shows that the optical properties are largely determined by the local structures. In contrast, the numerically obtained spectra of the phase-field sponge models accounting for the real-space structure show excellent agreement with the spectra of the experimentally measured sponges.



https://doi.org/10.1109/PIERS53385.2021.9694971
Zárate, José; Lutherdt, Stefan; Witte, Hartmut
Design of a robot gripping system: theoretical considerations and a new solution. - Osaka : Osaka University Library. - 1 Online-Ressource (2 Seiten)Publikation entstand im Rahmen der Veranstaltung: The 9.5th International Symposium on Adaptive Motion of Animals and Machines, Ottawa, Canada (Virtual Platform), 2021-06-22/25

https://doi.org/10.18910/84879
Helbig, Thomas; Kreipe, Stefan; Goos, Moritz; Wenzel, Sabine; Schumann, Nikolaus; Witte, Hartmut
Prediction of movement for adaptive control of an upper limb exoskeleton. - Osaka : Osaka University Library. - 1 Online-Ressource (2 Seiten)Publikation entstand im Rahmen der Veranstaltung: The 9.5th International Symposium on Adaptive Motion of Animals and Machines, Ottawa, Canada (Virtual Platform), 2021-06-22/25

https://doi.org/10.18910/84880
Laqua, Daniel; Kötz, Matthias; Borgmann, Antje; Engels, Oliver; Stahlschmidt, Alexander; Husar, Peter
Analog QRS detector with low power wireless communication module for medical IoT. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S180
Enthalten in: 05-1700-P9

https://doi.org/10.1515/bmt-2021-6025
Hunold, Alexander; Machts, René; Haueisen, Jens
Realisierung eines Kopfphantoms für bio-elektrische Anwendungen. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S348
Enthalten in: 07-0900-C1

https://doi.org/10.1515/bmt-2021-6054
Komosar, Milana; Graichen, Uwe; Fiedler, Patrique; Haueisen, Jens
Dry EEG recordings for detection of left, right hand, tongue and feet movements. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S345
Enthalten in: 07-0900-C1

https://doi.org/10.1515/bmt-2021-6054
Vorwerk, Johannes; Dong, Jinlong; Haueisen, Jens; Baumgarten, Daniel
Real-time source space EEG time-frequency analysis. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S34
Enthalten in: 05-0915-A6

https://doi.org/10.1515/bmt-2021-6006
Mejbar, Mohammed-Reda; Hauffe, Ralf; Haueisen, Jens; Fiedler, Patrique
A novel compliant adaptive cap for combined monitoring of EEG and fNIRS in neonates. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S31
Enthalten in: 05-0915-A6

https://doi.org/10.1515/bmt-2021-6006
Fiedler, Patrique; Fonseca, Carlos; Zanow, Frank; Haueisen, Jens
Rapid high-density EEG with dry multipin electrodes. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S29
Enthalten in: 05-0915-A6

https://doi.org/10.1515/bmt-2021-6006
Zahn, Diana; Klein, Katja; Radon, Patricia; Nagel, Edgar; Eichhorn, Michael; Wiekhorst, Frank; Dutz, Silvio
Magnetically driven passage of magnetic nanoparticles through eye tissues for magnetic drug targeting. - In: Biomedical engineering, ISSN 1862-278X, Bd. 66 (2021), S. S382
Enthalten in: 07-0900-C8

https://doi.org/10.1515/bmt-2021-6061