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In an early application of a new discovery in semiconductor physics, EU-funded researchers have developed a silicon infrared detector that is simpler and cheaper than conventional detectors. The ultimate goal is a silicon-based laser.
Stronger than steel, conducting electricity better than copper and heat better than diamonds: these are some of the promises held by carbon nanomaterials. Although not as well-known as graphene, carbon nanotubes (CNTs) show these properties – offering also a great advantage: they can be produced in larger quantities. Prof. Michael De Volder now explores new ways to manufacture CNTs-based devices with optimal features, potentially opening the way to their broader commercial use.
The Earth is made of layers, just like a big onion, composed of different materials. However, the compounds forming these layers are not static, flowing from one stratum to another, following patterns still not entirely understood. Prof. Patrick Cordier tries to model the real conditions minerals are subjected to beneath the Earth’s crust. His aim is to understand the forces driving tectonic plates so we can better comprehend phenomena like earthquakes and volcanic eruptions.
Researchers supported by the ERC have sampled magmatic gases derived from the Earth's mantle in the Eifel region in Germany. Their analysis of xenon, a rare and inert gas, sampled in bubbling mineral water could bring new insights into the origin of volatile elements, water and gases, that allowed life to develop on Earth.
Artur Avila is a franco-brazilian leading mathematician and an ERC grantee since 2010. At the age of 16, he won the International Mathematical Olympic gold medal and before finishing high school, he received a scholarship for the Instituto Nacional de Matemática Pura e Aplicada (IMPA) of Rio de Janeiro. He is now senior researcher both at the National Center for Scientific Research - CNRS and IMPA. In this interview, Prof. Avila tells us about his international career and the research he conducts both in Brazil and France.
A crucial discovery of how the brain functions has been made by EU-funded researchers. ERC Advanced Grant holder Prof. Oscar Marin and his team have shown that brain's 'hardware' - using the computing metaphor - is in fact tuneable and can adapt to internal and external influences. The findings could help develop new therapies for neurological disorders such as epilepsy, which affects around 50 million people globally.
More than 95% of our universe comes in the mysterious form of dark matter and dark energy that we can neither explain nor directly detect. Dr Catherine Heymans leads a team of researchers who were the first to “map” dark matter on the largest of scales. She now uses her research to confront Einstein’s theory of general relativity in an attempt to explain the nature of dark energy.
The inner core of our planet was discovered more than 65 years ago and since then Earth scientists have been investigating to understand more about its precise structure and geodynamic properties. Many fundamental questions still remain unanswered. Supported by the ERC, Dr Arwen Deuss has achieved some impressive results in this field.
A team of 28 scientists and engineers led by ERC grantee Dr Veerle Huvenne has just returned from a successful 5-week expedition on board the RRS James Cook. They used tailored marine equipment to provide some of the first detailed acoustic maps of the fauna inhabiting the vertical cliffs of the Whittard Submarine Canyon. In this interview, Dr Huvenne shares her impressions on an extraordinary scientific journey.
We know that clouds in the Earth’s atmosphere are made of liquid water droplets, ice particles or a mixture of both. Still, our basic understanding on the nature of these ice particles, how they form and their role in climate continue to be poor. The results of Dr Benjamin Murray's ERC research, published today in Nature, add a new piece to the atmospheric puzzle.