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Johannes Gutenberg Universitaet Mainz


Effective as a collective: Researchers investigate the swarming behavior of microrobots

A team of researchers at Johannes Gutenberg University Mainz studied the collective behavior of small robots and found that they can solve tasks that a single machine cannot. The study uses statistical physics to analyze how the robots interact and move, revealing potential applications in medical and pharmaceutical applications.

SourceJohannes Gutenberg Universitaet Mainz·JournalScience Advances·DateMay 26, 2023

Plate tectonic processes in the Pacific and Atlantic during the Cretaceous period have shaped the Caribbean region to this day

Researchers used computer simulations to understand the formation of new subduction zones and the development of the Caribbean large igneous province. The study found that simultaneous subduction of two plates led to a major mantle flow, triggering the formation of a plume and extensive magmatic activity.

SourceJohannes Gutenberg Universitaet Mainz·JournalNature Communications·DateApr 19, 2023

New possibilities in the theoretical prediction of particle interactions

A team of scientists at Mainz University has developed a method to efficiently compute a new class of Feynman integrals associated with Calabi–Yau geometries. This allows for high-precision theoretical predictions of particle interactions and better understanding of their mathematical structure.

SourceJohannes Gutenberg Universitaet Mainz·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateMar 21, 2023

Neanderthals hunted elephants: Earliest evidence found of humans killing elephants for food

Neanderthals deliberately hunted down and slaughtered European straight-tusked elephants over 125,000 years ago, providing a significant source of nutrition. The study reveals that Neanderthals came together in larger social groups than previously assumed, with adult male individuals being overrepresented in the assemblage.

SourceJohannes Gutenberg Universitaet Mainz·JournalScience Advances·DateFeb 2, 2023

Amplified search for new forces

A team of researchers has developed an amplification technique to study a parity-violating interaction between spins mediated by a hypothetical Z' boson. The setup, called SAPPHIRE, uses polarized rubidium and xenon atoms to increase sensitivity five orders of magnitude, setting new constraints on the strength of this interaction.

SourceJohannes Gutenberg Universitaet Mainz·JournalScience Advances·TypeExperimental study·DateFeb 1, 2023

A new model for dark matter

Researchers propose HYPER model of dark matter with a phase transition that boosts its interaction with normal matter, potentially making it detectable. The new diversity in the dark matter sector highlights an alternative to WIMPs, covering almost the full parameter range of planned experiments.

SourceJohannes Gutenberg Universitaet Mainz·JournalPhysical Review Letters·TypeComputational simulation/modeling·DateJan 24, 2023

Less risk, less costs: Portable spectroscopy devices could soon become real

Researchers at Johannes Gutenberg University Mainz have developed a new method for detecting alcohols using zero- to ultralow-field nuclear magnetic resonance (NMR) combined with the SABRE-Relay hyperpolarization technique. This innovative approach enables measurements without strong magnetic fields, reducing device size and potential ...

SourceJohannes Gutenberg Universitaet Mainz·JournalScience Advances·DateSep 1, 2022

European University Alliance FORTHEM granted EUR 14.4 million by the European Commission for additional four years

The FORTHEM alliance, a nine-university network in Europe, will receive nearly EUR 14.4 million in funding from the European Commission for the next four years. This funding will support the expansion of mobility offerings for students and staff, as well as the development of common infrastructure to foster a transnational European Uni...

Photorhabdus luminescens – a true all-rounder: Insect pathogenic bacterium also helps to combat fungal infestation

Research at Johannes Gutenberg University Mainz reveals Photorhabdus luminescens can protect plants from fungal infection, colonizing the fungus's hyphae and breaking down its cell wall. This secondary cell form also promotes plant growth and offers new potential for biological crop protection.

SourceJohannes Gutenberg Universitaet Mainz·JournalApplied and Environmental Microbiology·DateJul 6, 2022

German Research Foundation approves funding for excellent research in JGU’s core research areas

The German Research Foundation has granted funding to Johannes Gutenberg University Mainz (JGU) and its strategic alliance partners for four years. Researchers in materials sciences, biophysics, and medicine are working on three collaborative projects with a total funding volume of EUR 35 million. The focus is on developing multiscale ...

A novel path for sustainable photon upconversion with non-precious metals

Researchers from Johannes Gutenberg University Mainz have achieved a breakthrough in using chromium compounds for efficient green-to-blue photon upconversion. This process can expand the use of low-energy sunlight in solar cells and photochemical reactions, reducing environmental impacts associated with rare metal extraction.

SourceJohannes Gutenberg Universitaet Mainz·JournalAngewandte Chemie International Edition·DateJun 3, 2022