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The Institute of Plasma Physics and Laser Microfusion (IPPLM) invites you to attend the PLASMA 2025 – International Conference on Research and Application of Plasmas, which will be held from 15 until 19 September 2025 in Warsaw, Poland. This prestigious event, organized for over 30 years, attracts leading researchers from around the world and offers a unique opportunity for knowledge exchange and collaboration in the field of plasma physics.
PLASMA 2025 will cover a wide range of topics, from fundamental plasma processes to advanced technologies and their practical applications. The planned thematic sessions include:
This year's edition of the conference will have a unique character - during the last day of the event, the 20th anniversary of the coordination of research on nuclear fusion and the establishment of the Polish Euratom-IPPLM Association will be celebrated. The program includes lectures and discussion panels with the participation of people who co-founded the Association, as well as leading representatives of the world of science and industry, involved in the research and development of technologies leading to the realization of nuclear fusion.
The conference will take place at the NYX Hotel (71 Chmielna Street), located in the heart of Warsaw. Its convenient location will allow participants to easily explore both the historical and modern sides of the capital.
All information about the event can be found at: plasma2025.ipplm.pl/
The official language of the conference is English.
Below is the First Announcement PLASMA 2025, also available for download in PDF format.


On February 10–21, 2025, an experimental session was held in the Plasma-Focus PF-1000U laboratory, in which, in addition to the IPPLM team, a three-person team of researchers from the Prague University of Technology (ČVUT), led by Prof. Pavel Kubes. The research program of the session, which was a continuation of the activities of the International Centre for Dense Magnetized Plasmas (ICDMP), included the implementation of two basic tasks:
The obtained results are currently being analysed by a Polish-Czech team of researchers with a view to taking them into account when developing a model of neutron emission from Plasma-Focus generators. Additionally, the positive result of the laser polaro-interferometer tests will be an important argument in the Czech-Polish grant application being prepared (OPUS/Weave), regarding the similarities in the formation and breakdown of self-aligned plasma-magnetic field structures in laser plasma and Z-Pinch (Plasma-Focus) systems.
| A team of Polish-Czech researchers during an experimental session in the PF-1000U laboratory. | |
Photos: © IFPiLM
Scientists and engineers from eight nations, including Poland, have carried out a project using lasers on the Joint European Torus (JET) to study fusion fuel retention.
Laser Induced Breakdown Spectroscopy (LIBS), an analytical technique that uses a high-powered laser to measure the composition of a material, was deployed using a remotely operated robotics system on JET.
Initial use of the LIBS system detected JET’s fuel mix of tritium and deuterium on the tokamak’s plasma-facing components.
JET provides an ideal engineering and diagnostic testbed for developing technologies to manage tritium inventories in future power plants.
“The experiment was the culmination of several years of efforts to create a method for measuring fuel retention and the accumulation of impurities in the walls of thermonuclear reactors such as ITER. The Institute of Plasma Physics and Laser Microfusion has played an important role in this research from the beginning, which will now focus on developing artificial intelligence models to analyse the LIBS measurements in real time. Due to the numerous unknown factors related to the operation of future fusion power plants, this is certainly a big challenge, but when we started working with LIBS over a decade ago, the successes now achieved at JET seemed no less significant," said Dr. Paweł Gąsior from the Department of Fusion Plasma Research at the IPPLM.
In addition to Polish researchers, teams from Finland, Germany, Italy, Estonia, Latvia, Slovakia and Great Britain also took part in the international cooperation. These countries belong to EUROfusion, a consortium engaged in the research and development of fusion energy.
The project partners include:
The work was also supported by:
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| LIBS on JET, Credit: UKAEA | |
Jari Likonen, Principal Scientist at VTT, explained: “LIBS works by firing a laser beam rapidly at the surface of a tile or component. This generates a small plasma containing atoms, ions and free electrons which emit light that is in turn measured by a spectrometer.”
The LIBS technique is already widely used in industry sectors that involve challenging environments for humans and require rapid, comprehensive chemical analysis at the atomic level. Applications include geological analysis in space exploration, diagnostics of archaeological artifacts, and the study of metal diffusion in solar photovoltaic cells.
For its deployment on JET, modifications were made to adapt the LIBS technology to the facility’s vacuum pressured, donut ringed shaped environment. Salvatore Almaviva, Researcher for Laser-Based Metrology at ENEA, Italian National Agency for New Technologies, Energy and Sustainable Economic Development in Italy, said: “The technology was made compact, lightweight, reliable and robust to perform hundreds of measurements in JET.
The LIBS sensor was mounted on MASCOT, JET’s remotely operated robotic system designed for maintenance, repair and diagnostics tasks within its radioactive environment. Almaviva added, “With a single laser shot, the sensors aim to detect all the chemical elements present in the tile or component being analysed and, within limits, their isotopes.”
Rahul Rayaprolu, from Forschungszentrum Jülich (FZJ) in Germany, elaborated on the data collection process: “The LIBS unit transfers the collected light through a 20-metre-long optical fibre into four high-resolution spectrometers for spectral analysis. One spectrometer provides detailed insights into retained fuel, while a compact broad-range spectrometer simultaneously captures and records the overall spectral overview.”
Ionut Jepu, Materials Research Scientists at the UK Atomic Energy Authority, highlighted the importance of the facility: “JET offers the perfect testbed. Following its recent deuterium-tritium experiments, important measurements of tritium were attempted[GU2] within its tiles and components while reducing the hazard to humans and minimising any shutdown time.”
Over 800 locations within JET’s inner vessel were exposed to the LIBS system. Further details of the project’s results will be presented at the 20th International Conference on Plasma-Facing Materials and Components for Fusion Applications to be held in May 2025 in Slovenia.
The collaborative effort demonstrates the potential for future joint initiatives in the design, safety and operational efficiency of technologies for future fusion machines and exploring fuel retention management.
Source: EUROfusion
Research and technical employee Mr. Olgierd Cichorek, M.Sc., from the Laboratory of Plasma Nudge for Satellites at the IPPLM has been nominated for the title of Personality of the Year 2024 in the Science category.
The Editorial Board of "Polska Metropolia Warszawska", "Echa Dnia" and "Tygodnik Ostrołęcki" appreciated Olgierd Cichorek's contribution to the development of science and innovation, particularly distinguishing research on plasma flows in Hall-type thrusters.
You can vote for the IPPLM employee on the following website: https://polskanews.pl/mgr-inz-olgierd-cichorek/pk/7173591 until Thursday, 13 March 2025 until 9:00 p.m.
Personality of the Year is one of our oldest and most prestigious plebiscites, organized for years all over Poland by regional dailies and websites of the Polska Press publishing house. Its aim is to distinguish people who were involved in the life of local communities in the previous year, achieved success, helped others, and showed creativity and talent. Personality of the Year titles are awarded in five categories: Culture; Science; Social and charitable activities; Business and entrepreneurship, Politics, local government and local community.
For more information about the plebiscite please visit: www.polskanews.pl/osobowosc
Source: Polska Press
We are pleased to announce that the Minister of Industry, Ms. Marzena Czarnecka, appointed, as of 1 January 2025, Prof. Monika Kubkowska to the position of the director of the Sylwester Kaliski Institute of Plasma Physics and Laser Microfusion (IPPLM). Prof. Kubkowska replaced Prof. Andrzej Gałkowski, who has served in this position for 14 years.
Prof. Monika Kubkowska has been associated with the IPPLM since 2007. For over 9 years, she headed the Department of Nuclear Fusion and Plasma Spectroscopy, and since 2019, she has been the head of the Scientific and Industrial Centre for New Energy Technologies (CeNTE). In October 2020, she was appointed deputy director for scientific affairs at the IPPLM.
She has been distinguished many times for her scientific achievements and activities for the development of the economy, including: the Bronze Cross of Merit in 2016 and the IPPLM 1st degree award in 2019 for outstanding scientific achievements.
Prof. Monika Kubkowska is a graduate of the Faculty of Physics at the University of Warsaw. She obtained her doctorate in physical sciences in 2007 at the University of Warsaw, and in 2020, the NCBJ Scientific Council awarded her the degree of habilitated doctor in physical sciences.
Link to the announcement of the result of the competition for the position of the director of the Sylwester Kaliski Institute of Plasma Physics and Laser Microfusion in Warsaw: https://www.gov.pl
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Read moreResearch projects carried out at the IPPLM are funded by the Polish Ministry of Education and Science, the National Science Centre and by the European Commission within the framework of EUROfusion Consortium under grant agreement No 101052200. Financial support comes also from the International Atomic Energy Agency, European Space Agency and LaserLab Consortium as well as from the Fusion for Energy Agency.