色色啦

News

Early career award granted to Professor Jose Lado

Aalto physicist lauded for influential contributions to the theory of van der Waals quantum materials.
Jose Lado, photo: Evelin Kask
Photo: Evelin Kask

Professor Jose Lado was awarded early career prize. The award recognizes the talents of exceptional young researchers who are making a significant contribution to their respective field of research. .

Jose Lado has influential contributions to the field of two-dimensional magnetic materials and emergent correlated states in twisted van der Waals heterostructures.

Van der Waals materials are layered materials, with strong bonds across each layer but weak bonds 鈥 van der Waals forces 鈥 between layers. In twisted van der Waals heterostructures the rotation angle between layers changes smoothly and continuously. This opens ways for example towards tunable unconventional superconductors that might be applied to quantum computers and other quantum devices.

鈥楨ngineering van der Waals materials represents one of the most disruptive strategies to generate exotic artificial quantum matter,鈥 says Prof. Lado, who leads the Correlated Quantum Materials (CQM) group at the Department of Applied Physics.

The CQM group focuses on designing quantum materials showing radically new quantum properties, especially aiming at states of matter that have not been observed in nature so far. For this goal, the CQM group brings together techniques ranging from theoretical physics methodologies, quantum materials methods, tensor-network and neural-network algorithms, and, in the near future, quantum computing algorithms.

In 2021, Prof. Lado鈥檚 group provided the first theoretical proposal of an exotic state of matter in artificial van der Waals materials, known as a heavy-fermion state. A heavy fermion is a particle 鈥 in this case an electron 鈥 that behaves like it has a lot more mass than it actually does. Furthermore, Prof. Lado鈥檚 group, together with Prof. Peter Liljeroth鈥檚 group at Aalto, provided the first experimental demonstration of a heavy-fermion state in an artificial van der Waals material. These theoretical and experimental findings provide for the first time a platform to explore heavy-fermion phenomena in artificial van der Waals materials, not relying on rare earth elements as conventional heavy fermion compounds.

Prof. Lado finishes by saying, 鈥榃e now have the capability of generating radically new universes for quantum particles in materials, allowing us to explore exotic physics that have never been observed in nature. The design of artificial quantum materials represents one of the most thriving and disruptive directions in physics, with ultimately groundbreaking impacts both in fundamental science and quantum technologies.鈥

Contact information:

Jose Lado

Jose Lado

Assistant Professor
T304 Dept. Applied Physics

Read more:

An artistic rendition of quantum entanglement. Image: Heikka Valja

A new artificial material mimics quantum entangled rare earth compounds

By combining two-dimensional materials, researchers create a macroscopic quantum entangled state emulating rare earth compounds

News
Scehmatic of a heavy fermion on graphene

Unlocking radiation-free quantum technology with graphene

A new paper has shown it is possible to make heavy fermions in subtly modified graphene, which is much cheaper and safer

News
Twisted graphene sheets give rise to electrons with exotic properties

A magnetic twist to graphene

By combining ferromagnets and two rotated layers of graphene, researchers open up a new platform for strongly interacting states using graphene鈥檚 unique quantum degree of freedom

News
Professor Lado in the physics department coffee room

How to create things that don鈥檛 exist

The newest theoretical physics professor at Aalto calculates what we need to do to create electronic states that can鈥檛 otherwise exist in nature, and how we can harness them for quantum computing

News
  • Updated:
  • Published:
Share
URL copied!

Read more news

Samu Taulu
Appointments, Research & Art Published:

Samu Taulu develops next-generation brain imaging methods

Associate Professor of neurostimulation and neuroimaging Samu Taulu develops more precise methods for understanding the brain
Winners on stage for the EAA best student paper award
Awards and Recognition, Research & Art Published:

EAA Best Paper and Presentation Award for Young Researchers for postdoctoral researcher Thomas Deppisch

The awarded work shows how speech can be made clearer in noisy environments while still preserving directional cues
Curly-haired woman speaks into a microphone indoors, standing next to a screen.
Research & Art Published:

Professor Hanna Maylett: 鈥淲ithout time spent together, a shared vision cannot emerge鈥

According to Hanna Maylett, associate professor of film directing, a director doesn鈥檛 need to know all the answers; rather, their role is to create a process through which those answers can be discovered together.
Alex and Lucie Lampen
Cooperation, Research & Art Published:

From humble beginnings to a captain of industry 鈥 a visionary鈥檚 final gift lives on at Aalto University

The Lamp茅n bequest supports Aalto University chemical engineering students and future professionals through scholarships. Honorary counsellor and Master of Science (Technology) in chemical engineering Aleksander Lamp茅n was a significant pioneer in the Finnish wood processing and cellulose industries. His legacy continues to promote internationalisation and high-quality research in the field of bioproduct technology. A donation 色色啦 University is an impactful investment in education, innovation and the renewal of society.