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Dive into the research topics where M. Weidenbach is active.

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Featured researches published by M. Weidenbach.


Angewandte Chemie | 2015

Stiffness-Dependent In Vitro Uptake and Lysosomal Acidification of Colloidal Particles

Raimo Hartmann; M. Weidenbach; Martin Peter Neubauer; Andreas Fery; Wolfgang J. Parak

The physico-chemical properties of colloidal particles determine their uptake into cells. For a series of microparticles only one parameter, the mechanical stiffness, was varied, whereas other parameters such as size, shape, and charge were kept constant. The uptake was monitored in situ by analyzing individual particle trajectories including the progress of endocytosis, derived from local pH measurements around each particle. Evidence is presented that soft particles with low stiffness are transported faster to lysosomes than stiffer ones.


Journal of The Optical Society of America B-optical Physics | 2016

Fabrication of gradient-refractive-index lenses for terahertz applications by three-dimensional printing

A. I. Hernandez-Serrano; M. Weidenbach; Stefan F. Busch; Martin Koch; E. Castro-Camus

In this article we present the design, fabrication, and characterization of gradient-refractive-index lenses for terahertz (THz) applications. The fabrication was performed by three-dimensional printing. These new low-cost lenses were tested using THz time-domain spectroscopy and imaging in order to measure their optical properties. The results show a focusing capacity within the diffraction limit for frequencies below 700 GHz.


Optics Express | 2016

3D printed dielectric rectangular waveguides, splitters and couplers for 120 GHz

M. Weidenbach; David Jahn; Arno Rehn; Stefan F. Busch; Felipe Beltrán-Mejía; Jan C. Balzer; Martin Koch

We use a 3D printer to fabricate rectangular dielectric single mode waveguides for 120 GHz. The rectangular waveguides consisting of polystyrene showed an attenuation of 6.3 dB/m, which is low enough for short devices. We also characterize 3D printed Y-splitters and a 1x3-splitter based on multimode interference. Further, we construct and measure a variable planar waveguide coupler which can be used as a 3-dB coupler, a cross-coupler and no coupler at all.


Archive | 2017

3D-gedruckte quasioptische Bauelemente für den Terahertz-Frequenzbereich

M. Weidenbach; Stefan F. Busch; Jan C. Balzer

Seit der wissenschaftlichen Erschliesung des Terahertz-Frequenzbereiches Anfang der 90er Jahre steht die Terahertz-Technologie im Zentrum internationaler Forschungsaktivitaten, da sie einerseits neue Einblicke in der Grundlagenforschung erlaubt und andererseits erfolgversprechend fur die zerstorungsfreie Materialprufung ist. Zusatzlich ist der Frequenzbereich fur die Telekommunikationstechnik von hochstem Interesse, da in Zukunft mit immer hoheren Datenaufkommen zu rechnen ist und dieser Herausforderung nur mit der Erschliesung neuer Frequenzbereiche begegnet werden kann. Alle Anwendungsfelder haben gemein, dass quasioptische Bauelemente fur die Strahlfuhrung und Formung benotigt werden. Allein die Simulation von neuartigen Optiken kann Tage in Anspruch nehmen und deren Herstellung durch klassische Verfahren ist ebenfalls kosten- und zeitintensiv. An dieser Stelle kommt der 3D Druck als Rapid Prototyping Werkzeug ins Spiel: Durch die Verwendung von geeigneten Materialien, wie beispielsweise Polystyrene, konnen in kurzester Zeit Optiken gedruckt und getestet werden. Im Rahmen dieser Arbeit werden 3D gedruckte Wellenleiter, Linsen und Gitter vorgestellt.


german microwave conference | 2016

3D printed waveguides for 120 GHz

Jan C. Balzer; M. Weidenbach; Stefan F. Busch; Martin Koch

In this work we investigate waveguides for 120 GHz which are fabricated by a 3D printer. We use right-angled waveguides with different length to determine the attenuation of the waveguides. Further, we analyze a Y-shaped beam splitting structure.


Journal of Infrared, Millimeter, and Terahertz Waves | 2014

Optical Properties of 3D Printable Plastics in the THz Regime and their Application for 3D Printed THz Optics

Stefan F. Busch; M. Weidenbach; F. Schäfer; T. Probst; Martin Koch


Journal of Infrared, Millimeter, and Terahertz Waves | 2016

THz Optics 3D Printed with TOPAS

Stefan F. Busch; M. Weidenbach; Jan C. Balzer; Martin Koch


Journal of Infrared, Millimeter, and Terahertz Waves | 2017

3D Printed Terahertz Focusing Grating Couplers

David Jahn; M. Weidenbach; Jannik Lehr; Leonard Becker; Felipe Beltrán-Mejía; Stefan F. Busch; Jan C. Balzer; Martin Koch


Journal of Infrared, Millimeter, and Terahertz Waves | 2017

Communications with THz Waves: Switching Data Between Two Waveguides

Jianjun Ma; M. Weidenbach; R. Guo; Martin Koch; Daniel M. Mittleman


Angewandte Chemie | 2015

Beeinflussung der Aufnahme und lysosomalen Azidifizierung durch die Steifigkeit kolloidaler Partikel in vitro

Raimo Hartmann; M. Weidenbach; Martin Peter Neubauer; Andreas Fery; Wolfgang J. Parak

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A. I. Hernandez-Serrano

Centro de Investigaciones en Optica

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E. Castro-Camus

Centro de Investigaciones en Optica

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Andreas Fery

Dresden University of Technology

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