Zobrazeno 1 - 10
of 66
pro vyhledávání: '"D. Gehre"'
Autor:
J. Ebert, M. Fritts, C. Gößling, T. Göpfert, D. Gehre, C. Hagner, N. Heidrich, T. Köttig, T. Neddermann, C. Oldorf, T. Quante, S. Rajek, O. Reinecke, O. Schulz, J. Tebrügge, J. Timm, B. Wonsak, K. Zuber
Publikováno v:
Advances in High Energy Physics, Vol 2013 (2013)
The aim of the COBRA experiment is to prove the existence of neutrinoless double-beta-decay (0νββ-decay) and to measure its half-life. For this purpose a detector array made of cadmium-zinc-telluride (CdZnTe) semiconductor detectors is operated at
Externí odkaz:
https://doaj.org/article/94a3c06382e845dba49ff1e0bbf73d4b
Publikováno v:
The Journal of Immunology. 208:55.23-55.23
C-C chemokine receptor 7 (CCR7) binds to its ligand CCL19, which is expressed on the surface of activated dendritic cells, antigen activated B-cells and within lymphoid organs. Previous studies showed that homozygous deletion of CCR7 or its ligands l
Autor:
E. Rukhadze, Juliane Volkmer, Christian Nitsch, I. Stekl, Julia Küttler, Yingjie Chu, R. Hodák, Kevin Kröninger, J. Tebrügge, R. Temminghoff, Thomas Quante, Claus Gößling, S. Zatschler, Kai Zuber, D. Gehre, Arne Heimbold, Jouni Suhonen, Christian Herrmann, Joel Kostensalo, Lucas Bodenstein-Dresler
Publikováno v:
Physics Letters B, Vol 800, Iss, Pp-(2020)
A dedicated study of the quenching of the weak axial-vector coupling strength $g_{\rm A}$ in nuclear processes has been performed by the COBRA collaboration. This investigation is driven by nuclear model calculations which show that the $\beta$-spect
Publikováno v:
IEEE Transactions on Nuclear Science. 64:1574-1579
Examination of Ga2O3 as solid-state nuclear detector was carried out. Ga2O3 is a wide bandgap material with beneficial physical properties that enable its application in harsh environmental conditions, such as elevated temperature or strong electroma
Autor:
Reiner Klingenberg, S. Zatschler, Björn Wonsak, Caren Hagner, R. Temminghoff, Claus Gößling, Christian Nitsch, S. Rajek, R. Theinert, Kevin Kröninger, Kai Zuber, Henning Rebber, D. Gehre, J. Ebert, J. Tebrügge, K. Rohatsch, Thomas Quante, J. Timm, C. Oldorf, N. Heidrich
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 821:109-115
The COBRA collaboration operates a demonstrator setup at the underground facility Laboratori Nazionali del Gran Sasso (LNGS, located in Italy) to prove the technological capabilities of this concept for the search for neutrinoless double beta-decay.
Autor:
Tom Ruecker, Ulrich Fischer, D. Gehre, Abdallah Lyoussi, Gabor Kleizer, D. Szalkai, Maurizio Angelone, I. Rovni, Axel Klix
Publikováno v:
IEEE Transactions on Plasma Science. 42:3441-3444
Test blanket modules (TBMs) will be installed in the ITER with the aim to investigate the nuclear performance of different breeding blanket designs for fusion power reactors. Here, we present an overview of our ongoing work on three types of neutron
Autor:
C. Vermeulen, F.D. Smit, Andy Buffler, A. J. M. Plompen, M. Stanoiu, A. Domula, N. Nankov, J.C. Drohé, P. Maleka, C. Rouki, D. Gehre, Ralf Nolte, Kai Zuber, Dieter Geduld, Anton Wallner, R.T. Newman, Axel Klix
Publikováno v:
Nuclear Data Sheets. 120:44-47
The process of neutrinoless double beta decay ( 0 ν β β ) plays a key role in modern neutrino physics. Experiments on 76Ge 0 ν β β -decay using germanium semiconductors are at the forefront in this field. Due to the extremely low count rates ex
Publikováno v:
Fusion Science and Technology. 64:604-612
We have performed preliminary experimental tests for the development of a neutron spectrometer based on activation foils with short half-lives for the European ITER TBMs. Small samples of candidate materials have been irradiated with DT neutrons from
Publikováno v:
2016 IEEE Nuclear Science Symposium, Medical Imaging Conference and Room-Temperature Semiconductor Detector Workshop (NSS/MIC/RTSD).
Test Blanket Modules (TBM) will be installed in the experimental reactor ITER with the aim to investigate the nuclear performance of different breeding blanket designs for future power fusion reactors. KIT is developing a neutron activation system fo
Publikováno v:
Fusion Science and Technology. 62:196-203
A consortium of several European laboratories has performed neutronics experiments with a representative mock-up of the European helium-cooled lithium-lead (HCLL) test blanket module (TBM) irradiated with DT neutrons from intense neutron generators.