Davide won the First Prize Best Poster Award at the EMA school of magnetism!
Davide won the main prize for Best Poster at the 2022 European School of Magnetism, presenting his work on “Three-dimensional nanoscale imaging […]
Davide won the main prize for Best Poster at the 2022 European School of Magnetism, presenting his work on “Three-dimensional nanoscale imaging […]
Edoardo gave an invited talk entitled “Three-dimensional Nanoscale Imaging of Propagating Spin Waves via Time-Resolved X-Ray Laminography” at the Joint European Magnetism […]
During JEMS 2022, Daniela has been appointed as Officer of Digital networking of the European Magnetism Association! https://magnetism.eu/
Our Primer on thermally assisted scanning probe lithography (tSPL) has been published in Nature Reviews Methods Primers! We address the basics and applications of thermal scanning probe lithography, from biology to magnetism to nanoelectronics.
Our new review paper “Review on Magnonics with Engineered Spin Textures” is out in Journal of Physics D: Applied Physics! We cover how to stabilize spin textures, and how to use them for generating / guiding / manipulating spin waves.
The Italian Quantum Weeks are a set of events promoted by Italian engineers, physicists, science communicators and educators for the first World Quantum Day (14 April 2022). The aim is to raise awareness of the quantum world and the opportunities that the quantum revolution is bringing.
EU funded Project B3YOND supports the Italian Quantum Weeks in the interactive exhibition “Dire l’indicibile: la sovrapposizone quantistica”.
The 2021 Magnonics Roadmap, with our contribution in the section “Interaction of Magnons with Spin textures” is out in Open Access on the Journal of Physics: Condensed Matter.
In this early-career EMA seminar by Edoardo, the stabilization of nanoscale spin textures using tam-SPL, and its applications to magnonics are discussed.
In ERC-funded project B3YOND – “Beyond Nanofabrication via Nanoscale Phase Engineering of Matter”, we will develop a new nanofabrication methodology, using highly localized and tunable heat sources for crafting new artificial nanomaterials and devices for electronics and spintronics.
Start of the EU-funded Eurostar Magnisense project, in collaboration with Parvis s.p.a. The main goal of the project is the development and testing of novel sensors and characterization methods for magnetic ink applied to security documents.
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