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25.03.2021 11:09

Learning microswimmers - Miniaturised machines to be made capable of learning with machine learning algorithms

Susann Huster Stabsstelle Universitätskommunikation / Medienredaktion
Universität Leipzig

    Living organisms, from bacteria to animals and humans, can perceive their environment and process, store and retrieve this information. They learn how to react to later situations using appropriate actions. A team of physicists at Leipzig University led by Professor Frank Cichos, in collaboration with colleagues at Charles University Prague, have developed a method for giving tiny artificial microswimmers a certain ability to learn using machine learning algorithms. They recently published a paper on this topic in the renowned journal Science Robotics.

    Microswimmers are artificial, self-propelled, microscopic particles. They are capable of directional motion in a solution. The Molecular Nanophotonics Group at Leipzig University has developed special particles that are smaller than one-thirtieth of the diameter of a hair. They can change their direction of motion by heating tiny gold particles on their surface and converting this energy into motion. “However, these miniaturised machines cannot take in and learn information like their living counterparts. To achieve this, we control the microswimmers externally so that they learn to navigate in a virtual environment through what is known as reinforcement learning,” said Cichos.

    With the help of virtual rewards, the microswimmers find their way through the liquid while repeatedly being thrown off of their path, mainly by Brownian motion. “Our results show that the best swimmer is not the one that is fastest, but rather that there is an optimal speed,” said Viktor Holubec, who worked on the project as a fellow of the Alexander von Humboldt Foundation and has now returned to the university in Prague.According to the scientists, linking artificial intelligence and active systems like in these microswimmers is a first small step towards new intelligent microscopic materials that can autonomously perform tasks while also adapting to their new environment. At the same time, they hope that the combination of artificial microswimmers and machine learning methods will provide new insights into the emergence of collective behaviour in biological systems. “Our goal is to develop artificial, smart building blocks that can perceive their environmental influences and actively react to them,” said the physicist. Once this method is fully developed and has been applied to other material systems, including biological ones, it could be used, for example, in the development of smart drugs or microscopic robot swarms.


    Wissenschaftliche Ansprechpartner:

    Professor Frank Cichos
    Leipzig University; Faculty of Physics and Earth Sciences
    Phone: +49 341 9732571
    E-Mail: cichos@physik.uni-leipzig.de


    Originalpublikation:

    Original title of the publication in Science Robotics:
    “Reinforcement Learning with Artificial Microswimmers”; DOI: 10.1126/scirobotics.abd9285
    https://robotics.sciencemag.org/content/6/52/eabd9285


    Bilder

    Electron microscope image of a microswimmer. The particle is 2.18 micrometres in diameter. The small, brighter dots on the particle are gold nanoparticles about 8 nanometres in size.
    Electron microscope image of a microswimmer. The particle is 2.18 micrometres in diameter. The small ...
    Photo: Leipzig University

    Professor Frank Cichos.
    Professor Frank Cichos.
    Photo: Swen Reichhold


    Merkmale dieser Pressemitteilung:
    Journalisten, Wissenschaftler
    Physik / Astronomie
    überregional
    Forschungsergebnisse, Wissenschaftliche Publikationen
    Englisch


     

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