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Andreas Vetter

Explore the profile of Andreas Vetter including associated specialties, affiliations and a list of published articles. Areas
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Articles 13
Citations 73
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Recent Articles
1.
Baginski M, Pedrazo-Tardajos A, Altantzis T, Tupikowska M, Vetter A, Tomczyk E, et al.
ACS Nano . 2021 Feb; 15(3):4916-4926. PMID: 33621046
The crystallization of nanomaterials is a primary source of solid-state, photonic structures. Thus, a detailed understanding of this process is of paramount importance for the successful application of photonic nanomaterials...
2.
Vetter A, Yan C, Kirner R, Scharf T, Noell W, Voelkel R, et al.
Opt Express . 2019 Nov; 27(22):32523-32535. PMID: 31684463
In proximity mask aligner photolithography, diffraction of light at the mask pattern is the predominant source for image shape distortions such as line end shortening and corner rounding. One established...
3.
Symeonidis M, Suryadharma R, Grillo R, Vetter A, Rockstuhl C, Burgi T, et al.
Opt Express . 2019 Sep; 27(15):20990-21003. PMID: 31510185
We apply a high-resolution interference microscope with spectral resolution to investigate the scattering response of isolated meta-atoms in real space. The final meta-atoms consist of core-shell clusters that are fabricated...
4.
Augenstein Y, Vetter A, Vosoughi Lahijani B, Herzig H, Rockstuhl C, Kim M
Light Sci Appl . 2018 Dec; 7:104. PMID: 30564310
Bloch surface waves (BSWs) are sustained at the interface of a suitably designed one-dimensional (1D) dielectric photonic crystal and an ambient material. The elements that control the propagation of BSWs...
5.
Vetter A, Kirner R, Opalevs D, Scholz M, Leisching P, Scharf T, et al.
Opt Express . 2018 Aug; 26(17):22218-22233. PMID: 30130918
A continuous improvement of resolution in mask-aligner lithography is sought after to meet the requirements of an ever decreasing minimum feature size in back-end processes. For periodic structures, utilizing the...
6.
Kirner R, Vetter A, Opalevs D, Gilfert C, Scholz M, Leisching P, et al.
Opt Express . 2018 Feb; 26(2):730-743. PMID: 29401954
We present a mask-aligner lithographic system operated with a frequency-quadrupled continuous-wave diode laser emitting at 193 nm. For this purpose, a 772 nm diode laser is amplified by a tapered...
7.
Ferrari S, Kovalyuk V, Hartmann W, Vetter A, Kahl O, Lee C, et al.
Opt Express . 2017 Apr; 25(8):8739-8750. PMID: 28437951
We investigate how the bias current affects the hot-spot relaxation dynamics in niobium nitride. We use for this purpose a near-infrared pump-probe technique on a waveguide-integrated superconducting nanowire single-photon detector...
8.
Vetter A, Ferrari S, Rath P, Alaee R, Kahl O, Kovalyuk V, et al.
Nano Lett . 2016 Oct; 16(11):7085-7092. PMID: 27759401
Ultrafast single-photon detectors with high efficiency are of utmost importance for many applications in the context of integrated quantum photonic circuits. Detectors based on superconductor nanowires attached to optical waveguides...
9.
Repp F, Vetter A, Duda G, Weinkamer R
Med Biol Eng Comput . 2015 Apr; 53(9):829-42. PMID: 25861747
The formation of different tissues in the callus during secondary bone healing is at least partly influenced by mechanical stimuli. We use computer simulations to test the consequences of different...
10.
Witt F, Petersen A, Seidel R, Vetter A, Weinkamer R, Duda G
Ann Biomed Eng . 2011 Jun; 39(10):2531-41. PMID: 21692004
Mechanobiological theories have been introduced to illustrate the interaction between biology and the local mechanical environment during bone healing. Although several theories have been proposed, a quantitative validation using histomorphometric...