
Projekte
Hessische Wissenschaftlerinnen und Wissenschaftler unterschiedlichster Disziplinen benötigen Hochleistungsrechnen für ihre Forschung.
Hessische Wissenschaftlerinnen und Wissenschaftler unterschiedlichster Disziplinen benötigen Hochleistungsrechnen für ihre Forschung.
Displaying 1 - 30 of 41
Linking experimental and theoretical observations on a physical system is one of the key objectives of modern science ...
Symmetry, dimensionality, and local environment are essential elements affecting the magnetism of transition-metal ...
In the past centuries chemists have established a solid knowledge for the synthesis of molecules in solution. With the ...
Functional materials for magnetic cooling devices at room temperature are in focus for the materials scientists during ...
The potential of chalcogenides in applications like optoelectronics, thermoelectrics, transparent contacts, and thin ...
A quantum computer is a device that exploits quantum behavior to solve a computational problem that cannot be tackled ...
Linking experimental and theoretical observations on a physical system is one of the key objectives of modern science ...
We survey the landscape of MAB and Mbene superconductors out of our previous high-throughput predictions using first ...
The project was majorly dedicated to build cell mechanistic models and study cell mechanics and cell migration. Both ...
White light generation (WLG) is one of the most puzzling and exciting topics in nonlinear optics. Strictly speaking, WLG ...
Active matter consisting of motile agents such as bacteria, algae, or synthetic microswimmers on the microscale and ...
Coarse-grained molecular dynamics (MD) simulation provides a faster alternative to all-atom MD simulation, essential for ...
In a hydrogen fuel cell, that consists of an anode and a cathode, oxidation and reduction reactions occur simultaneously ...
Autonomous materials discovery with desired properties is one of the ultimate goals for modern materials science, and ...
Coarse-Grained molecular dynamics simulation is a promising alternative to all-atom molecular dynamics simulation for ...
The current project aims to reveal the relevant intrinsic mechanisms responsible for the coupling of the lattice and ...
The aim of the last project was to understand the CO2 activation over Au and Cu loaded ceria and bare indium oxide. In ...
Ideal one-dimensional (1D) electronic systems are fascinating, as they show quantisation of conductance, charge-density ...
Antiferroelectric (AFE) materials have recently been of a great interest, due to their unique applications in the energy ...
One important aim of modern energy-conserving technologies is magnetic cooling at room temperature. This environmentally ...
Understanding the behavior of different materials not only furthers general knowledge, but can also often be used for ...
Ceria is an important support material for precious metals to catalyze oxidation reactions such as CO oxidation or the ...
The demand of minimization and feasibility of integration makes two-dimensional (2D) materials remarkable in promising ...
Like perovskite materials, antiperovskites (APVs) display many intriguing physical properties. Particularly, the ...
In this work, we performed first-principles calculations to evaluate the anomalous Hall conductivity as well as the ...
Entanglements between polymer chains are demonstrated as one of the key factors to modulate the macroscopic physical ...
Understanding the behavior of different materials not only furthers general knowledge, but can also often be used for ...
Solid electrolytes (SE) in all-solid-state batteries due to their high safety and flexibility in design have attracted ...
Ideal one-dimensional electronic systems are characterized by unusual and fascinating physical phenomena, including ...
Comparing to traditional electronics, spintronics makes use of both charge and spin freedoms of electrons, which is ...