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Göpfrich Group - Biophysical Engineering of Life(Cluster of Excellence "3D Matter Made to Order" and MPI for Medical Research)
Göpfrich Group - Biophysical Engineering of Life logo
Nov 30, 2021
The Göpfrich Group is located at at the Max Planck Institute for Medical Research and part of the Cluster of Excellence "3D Matter Made to Order".
Jun 17, 2021 - Troposhere, Free Radicals & Volcanic Emissions
Dinger, Florian; Kleinbek, Timo; Dörner, Steffen; Bobrowski, Nicole; Platt, Ulrich; Wagner, Thomas; Ibarra, Martha; Espinoza, Eveling, 2021, "SO2 and BrO emissions of Masaya volcano from 2014 to 2020 [Research Data]", https://doi.org/10.11588/data/IX51KS, heiDATA, V1, UNF:6:VbhqF5vB+XRklpsSgIST5A== [fileUNF]
EXCERPT FROM ABSTRACT: Masaya (Nicaragua, 12.0°N, 86.2°W; 635m a.s.l.) is one of the few volcanoes hosting a lava lake, today. This study has two foci: (1) discussing the state of the art of long-term SO2 emission flux monitoring with the example of Masaya and (2) the provision a...
Troposhere, Free Radicals & Volcanic Emissions(Heidelberg University - Institute of Environmental Physics)
Jun 17, 2021
Open Research Data from the research group on Troposhere, Free Radicals & Volcanic Emissions from the Institute of Environmental Physics at Heidelberg University.
3D Matter Made to Order (3DMM2O)(Heidelberg University and Karlsruhe Institute of Technology (KIT))
3D Matter Made to Order (3DMM2O) logo
May 14, 2021
Data publications from the Cluster of Excellence 3D Matter Made to Order (3DMM2O). The Cluster is a collaboration of Karlsruhe Institute of Technology (KIT) and Heidelberg University. It pursues an interdisciplinary approach through conjunction of natural, engineering, and social...
Mar 8, 2021 - Nanomaterials for Optoelectronics NMOE
Settele, Simon; Berger, Felix J.; Lindenthal, Sebastian; Zorn, Nicolas F.; Zharnikov, Michael; Högele, Alexander; Zhao, Shen; Asyuda, Andika; El Yumin, Abdurrahman Ali; Zaumseil, Jana, 2021, "Research Data supporting the paper: Synthetic Control over the Binding Configuration of Luminescent sp³-Defects in Single-Walled Carbon Nanotubes", https://doi.org/10.11588/data/RI2KLV, heiDATA, V1
Underlying data for all figures in the paper "Synthetic Control over the Binding Configuration of Luminescent sp3-Defects in Single-Walled Carbon Nanotubes" , Nat. Commun. 2021, 12, 2119.
Nanomaterials for Optoelectronics NMOE(Universität Heidelberg)
Mar 8, 2021
Jan 27, 2021 - CryoEM
Kammerer, Jochen A.; Duan, Xiaoyang; Neubrech, Frank; Schröder, Rasmus R.; Liu, Na; Pfannmöller, Martin, 2021, "Stabilizing γ-MgH₂ at Nanotwins in Mechanically Constrained Nanoparticles [Research Data and Source Code]", https://doi.org/10.11588/data/LMMXAI, heiDATA, V1
Research Data and Source Code associated with the related publication.
CryoEM(Heidelberg University - Bioquant)
Jan 27, 2021
Open Research Data from the CryoEM Group at the Institute for Molecular Systems Engineering and Advanced Materials of Heidelberg University.
Aug 11, 2020 - Synthetic Quantum Systems (SynQS)
Mil, Alexander, 2020, "Data analysis of the phd work: "Experimental realization of U(1) gauge invariance in ultracold atomic mixtures"", https://doi.org/10.11588/data/YH80DI, heiDATA, V1
Phd Thesis Abstract: "This thesis reports on the experimental realization of an elementary building block for analog quantum simulation of a U(1) lattice gauge theory in a mixture of two bosonic quantum gases. Experimentally, the building block is realized by Bose-Einstein conden...
Apr 2, 2020 - Synthetic Quantum Systems (SynQS)
Hesse, Alexander; Köster, Kerim; Steiner, Jakob; Michl, Julia; Vorobyov, Vadim; Dasari, Durga; Wrachtrup, Jörg; Jendrzejewski, Fred, 2020, "Direct control of high magnetic fields for cold atom experiments based on NV centers [Dataset]", https://doi.org/10.11588/data/W60KUN, heiDATA, V2, UNF:6:3I/nRXdQ66s4MU0XvXd49g== [fileUNF]
In atomic physics experiments, magnetic fields allow to control the interactions between atoms, eg. near Feshbach resonances, or by employing spin changing collisions. The magnetic field control is typically performed indirectly, by stabilizing the current of Helmholtz coils prod...
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