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zfpin zfpin division of surface physics and nanotechnology institute of physics faculty of materials engineering and technical physics poznan university of technology home news people publications laboratories uhv stm lab sensor lab edu lab teaching gallery joint equipment history 4 seasons contact home news people publications laboratories uhv stm lab sensor lab edu lab teaching gallery joint equipment history 4 seasons contact pl en we observe ferromagnetism in 2d dysprosium platinum surface alloys read more we investigate topological superconductivity in antiferromagnetic mn islands on nb 110 read more we have developed and built a new magnetic field sensor read more we carry out a controlled growth of molecular chains read more we are working on the use of graphene to detect the magnetic field in fusion reactors read more we know more and more about 2d gd pt surface alloys on the surface of a single crystal pt 111 read more what is the effect of high temperatures on the sub monoatomic cobalt structures on the ge substrate read more we are investigating the initial stage of ba adatom adsorption on the surface of ge 001 read more can hall sensors work in extreme environments read more we investigate the structural magnetic and superconducting properties of atomic layers on nb 110 read more we observe the fe and co intercalated graphene ir 111 systems read more what we do in short we explore the surface of solids with sub nanometer resolution this allows us to determine the atomic structure of the investigated surfaces to analyze their electronic properties as well as to obtain a range of other information and statistical data following the leading trends in science in recent years we have focused mainly on the so called systems of reduced dimension such as ultra thin films sub monolayers nanowires and nanoclusters and molecular structures for surface studies we use scanning tunneling microscopes stm and atomic force microscopes afm and additionally with the help of tunneling spectroscopy we create maps of the local density of states the stm and afm microscopes in our laboratories are adapted to work in ultra high vacuum uhv conditions in a wide temperature range from 4 2 k to 600 k we also use techniques of low energy electron diffraction leed and auger electron spectroscopy aes as well as many other research techniques available at our faculty such as scanning electron microscopy sem infrared visible and ultraviolet absorption spectroscopy ir uv vis or resonant raman scattering rrs an important application of systems of reduced dimension is nanosensors e g using graphene as an active element we test and modify the properties of materials in such a way as to enable their use in magnetic field sensors capable of stable operation in extreme environments news new project eureka nano 2026 conference new article ieee electron device letters doctoral promotion and state decoration more news facebook youtube instagram division of surface physics and nanotechnology piotrowo 3 st 61 138 poznań nano put poznan pl personal data protection facebook youtube instagram this website uses cookies to provide services at the highest level by continuing to use the site you agree to their use i agree
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