911

News

New Academy of Finland postdoctoral researchers explore new materials, mathematical modelling, and computer security

8 postdoctoral research grants were awarded to the School of Science
Cyber. Kuva: Aalto-yliopisto / Aki-Pekka Sinikoski
Photo: Aki-Pekka Sinikoski.

Zoran Cenevhas received funding for a project that aims to develop a new printing method for producing 2D/3D objects using aerosolized particles and a focused laser beam. This will allow for printing of 2D or 3D objects with sub-micron resolution, which is far beyond what is currently available.

Lukáš Flajšman’s project “Bridging Magnons” develops new techniques for exploiting the phenomena of spin waves in materials. Mobile phone and WiFi technology rely on microwave processing, and the components developed in this project could potentially enable much smaller and more powerful devices.

Lachlan Gunnis aiming to prevent computer hackers being able to exploit a common type of bug called ‘memory corruption vulnerabilities’. These bugs are a major risk to computer security; Microsoft state that they make up seventy percent of their reported vulnerabilities. The goal of the project is to develop new techniques for defending against them.

Tom Gustafsson’s project “Adaptive high-order mortar methods for computational contact mechanics” is designing new algorithms and methods for mathematical modelling for complex engineering simulations

Shinji Koshida’s funding will support his continuing work into statistical mechanics in the   project “Coupling of Gaussian free fields and Schramm–Loewner evolutions on multiply connected domains”.

Laure Mercier de Lepinay has received a grant for the project “Vacuum forces between superconductors probed with microwave optomechanics” to explore the incredibly small forces that quantum fluctuations exert on materials. These forces have been measured before, but never using superconducting materials, and Dr Mercier de Lepinay hopes that doing so will shed more light on the phenomen.

Carlo Rigoni is looking to create a new class of synthetic materials that could behave biologically. The project “Dissipative functional nanomaterials with non-equilibrium magnetic and  photonic responses” will try to make nanomaterials with structures that can be controlled via energy dissipation.

Owies Wani is producing new materials inspired by “homeostasis — nature’s ability to resist changes imposed by the environment. He will produce a resilient and interactive material that if strained under load would have an inbuild mechanism to return to initial state and thereby maintain its integrity. This will potentially be useful for the emerging field of soft-robotics.

  • Updated:
  • Published:
Share
URL copied!

Read more news

Four people in a meeting room watch a large screen showing charts and photos, with laptops on a long table.
Research & Art Published:

Bachelor's Students Successfully Complete Research Internship

Three bachelor's students have successfully completed their research internships.
Scientist in white coat and gloves examining wooden samples at a lab bench with shelves and equipment
Research & Art Published:

From Materials to Smart Textiles: Benjamin Begins a New Chapter at Aalto

Ping-Chun Chen is a researcher from National Tsing Hua University, Taiwan.
A group of people cheering with branded black cups. 4 people sitting, 2 on each side, and one in the middle standing up. 3 men and two women
Campus, Research & Art, University Published:

The idea of three researchers generated a deep tech company

Sim Analytics Oy relies on strong research expertise. Its story began when three researcher colleagues working in different laboratories at LUT University began to consider how to provide and analyse data in a way that would support industrial companies in making business decisions.
Glowing neon sphere with geometric core and light trails floating above a tablet in the dark
Press releases, Research & Art Published:

World’s first superconducting quantum heat engine opens the path to larger quantum computers

A newly-developed superconducting quantum heat engine not only advances our understanding of thermodynamics but also enables technologies needed for high-qubit quantum computers.