Erweiterte Suche der Leibniz Universität Hannover
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One dimensional quantum systems SS 12 Start: 23.4.2012 This lecture will be held in English Where and when: Mondays 16:00 18:00 Appelstr. 2, 2nd Floor, 269 but be careful because some times the place and time may change I will announce it with time.
One dimensional quantum systems SS 12 Start: 23.4.2012 This lecture will be held in English Where and when: Mondays 16:00 18:00 Appelstr. 2, 2nd Floor, 269 but be careful because some times the place and time may change I will announce it with time.
Plasmon in low dimensional structures A prominent possiblity to couple energy transported by electromag netic radiation into conducting matter is by generation of plasmons, which can happen for objects from zero to three dimensions.
Spin dynamic of Two dimensional Transition Metal Dichalcogenides Transition metal dichalcogenides TMDs are part of the new generation of two dimensional semiconductior systems and provide unique optical properties: Based on the reduced dielectric screening in the low dimensional system and the high effective mass, the general optical proper ties are determined by Wannier Mott excitons with high binding energies of hu...
Two dimensional data processing in Mössbauer spectroscopy Leitung: Supervisor: Prof. Dr. Ing. Robert Patzke, Hochschule Hannover, Electrical Engineering and Information Technology.
Exceptional points in the one dimensional Hubbard model 04.12.2023 Roman Rausch Braunschweig Ort: Kleiner Seminarraum 269, Appelstraße 2 Zeit: 10:15 Uhr Abstract Non Hermitian phenomena offer a novel approach to analyze and interpret spectra in the presence of interactions: The one particle Green s function may show exceptional points with a corresponding Fermi arc at zero frequency.
New publication: Three dimensional nanothermometry below the diffraction limit 07/09/2021 Representative depiction of propagating exciting fluorescence EXC , depletion beam DEP , and fluorescence.
Two dimensional data processing in Mössbauer spectroscopy Led by: Supervisor: Prof. Dr. Ing. Robert Patzke, Hochschule Hannover, Electrical Engineering and Information Technology.
New publication: Three dimensional nanothermometry below the diffraction limit 07/09/2021 Representative depiction of propagating exciting fluorescence EXC , depletion beam DEP , and fluorescence.
Efficient stochastic finite element method for high dimensional nonlinear stochastic problems Team: Zhibao Zheng, Udo Nackenhorst Jahr: 2021 Förderung: Alexander von Humboldt Foundation The project focuses on simulating complexly high dimensional nonlinear stochastic systems in practice.
Subsequently the dimensions of all task fulfilling serial and parallel robot structures from the structural synthesis will be optimized dimensional synthesis . This is based on the automatic modeling of the kinematics and dynamics of the robot structure according to useful optimization parameters. Then it is possible to calculate kinematical and dynamical performance indices as well as cost functions for the optimization process. A re...
Efficient stochastic finite element method for high dimensional nonlinear stochastic problems Led by: Udo Nackenhorst Team: Zhibao Zheng Year: 2021 This project is carried out within the framework of the International Research Training Group 2657.
Efficient stochastic finite element method for high dimensional nonlinear stochastic problems Leitung: Udo Nackenhorst Team: Zhibao Zheng Jahr: 2021 This project is carried out within the framework of the International Research Training Group 2657.
Research team develops matter wave lens system for three dimensional collimation of a Bose Einstein condensate 08/30/2021 Atom chip for manipulating the Bose Einstein condensate The wave property of matter can be used in matter wave interferometers for the precise measurement of different quantities, such as rotations and accelerations, as well as for the determination of fundamental natural constants, for example the gravitational co...
Generation of Task Specific Robot Manipulators via Combined Structural and Dimensional Synthesis Team: M. Sc Moritz Schappler Year: 2018 Date: 01 01 18 Funding: German Research Foundation DFG Duration: 2018 2022 The increasing utilization of robotic systems and automation technologies in new areas requires the development of task specific manipulators in order to perform a given task with best possible performance e. g. small robot si...
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