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Hanseatic Life Science Research Infrastructure Consortium (HALRIC)

During the past decade, significant development and investments have been made in advanced research infrastructures in the Öresund Kattegat Skagerrak (ÖKS)-Hamburg area. The facilities already provide advanced Life Science tools, but there is an untapped potential to further expand the collaboration at and around the sites, as well as cross-borders.HALRIC aims to be a springboard for innovation ca

https://www.microscopy.lu.se/welcome-cipa/hanseatic-life-science-research-infrastructure-consortium-halric - 2026-09-27

Costs of services

Initial counselling and quickly resolved issues (<1 hour) are free of charge. The use of the CIPA workstations is also free for users.For smaller projects (~10-20 hours) CIPA charges 500 SEK per hour (one of our experts working on the case).For any projects estimated to take longer than 20 hours, the approximate time will be calculated along with the project and cost plan as well as with delivery

https://www.microscopy.lu.se/welcome-cipa/costs-services - 2026-09-27

InfraVis Expo 2026 – Sign up

21 September 2026 10:00 to 14:00 Sign up for the InfraVis Expo! The InfraVis Expo takes place in the Astronomy Building (Sölvegatan 27), 21 September 2026 at 10:00 to 14:00.Programme information on the event page.Registered participants will be served breakfast in the morning, lunch at noon and coffee in the afternoon. Last day to sign up: 14 September. Contact details Your name (required) Your em

https://www.microscopy.lu.se/form/infravis-expo-2026-sign - 2026-09-27

About CIPA

CIPA is a Lund University research infrastructure designed to meet the needs for management, analysis and visualization of scientific data. The main motivation for CIPA is the amount of expertise needed to handle the complexity and sheer volume of data generated by modern research techniques. CIPA mainly provides access to expertise, but also to computer hardware and imaging software. By consultin

https://www.microscopy.lu.se/cipa/about - 2026-09-27

Resources

Research Infrastructures and Initiatives Examples of research infrastructures of high relevance for the CIPA community, at Lund University and elsewhere (external links):InfraVisInfraVis@LUMBioQIMMAX IVESSNAISSLUNARCThrough the National Academic Infrastructure for Super­computing in Sweden (NAISS) and the Lund University centre for scientific and technical computing (LUNARC), CIPA users can apply

https://www.microscopy.lu.se/cipa/resources - 2026-09-27

Events and workshops

This is an incomplete list of past (and sometimes upcoming) events involving CIPA. Events 2026Sep 21: InfraVis Expo 2026 The 2026 InfraVis Expo showcased current work and opportunities within InfraVis. There were presentations by InfraVis application experts, InfraVis users and representatives from other infrastructures, as well as demo stations (including VR and tomography) and posters.The progra

https://www.microscopy.lu.se/welcome-cipa/events-and-workshops - 2026-09-27

CIPA staff

Kajsa M Paulsson, Head of unit/directorCIPA was initiated and is headed by Kajsa M Paulsson. While leading her research group at Experimental Medical Science, Kajsa has in parallel built a reputation and competence in management of Research Infrastructures. She has, for example, been a board member of a number of Swedish and European Research Infrastructures and initiatives. She is also an acknowl

https://www.microscopy.lu.se/welcome-cipa/cipa-staff - 2026-09-27

InfraVis@LU

InfraVis is a Swedish national Research Infrastructure for data visualization. InfraVis helps you visualize research data from any scientific domain and gives you access to state-of-the-art visualization competence, support, equipment, training, and methods. InfraVis@LU is the InfraVis node for Visualisation and Analysis at Lund University, coordinated by CIPA.   InfraVis provides advanced visuali

https://www.microscopy.lu.se/cipa/infravislu - 2026-09-27

CryoEM for Life Sciences at Lund University

ServicesCryoEM at Lund University has a sample preparation lab installed with Mark IV Vitrobot (Thermo Fisher) to prepare cryo grids. Samples can be prescreened by a negative stain, and the cryo grids can be shipped to SciLifeLab or other facilities. Since the beginning of 2025 there is also a state-of-the-art Glacios2 cryo-electron microscope with a direct electron detector Falcon4i in our facili

https://www.microscopy.lu.se/cryoem-life-sciences-lund-university - 2026-09-27

cryoEM applications experts

Welcome to contact one of our experts! Crispin Hetherington Crispin’s background is transmission electron microscopy in materials science. In his various job positions in microscope user facilities, he gained a wide experience of different samples and of microscopy techniques including high resolution and aberration correction in TEM and STEM.  His present role in nCHREM now mainly involves operat

https://www.microscopy.lu.se/single-particle-cryoem-0/cryoem-applications-experts - 2026-09-27

cryoEM infrastructure stakeholders

Lotta Happonen I work as a researcher at the Faculty of Medicine studying protein-protein complexes arising at the host-pathogen interface, with the aim of understanding how pathogens evade the human immune defence. The main methods we are using are quantitative and structural mass spectrometry (cross-linking and hydrogen-deuterium exchange) in combination with single-particle cryo-EM. Since its s

https://www.microscopy.lu.se/single-particle-cryoem-0/cryoem-infrastructure-stakeholders - 2026-09-27

Proton Dripline Theses

LU student theses in connection with our research on N~Z nuclei near the proton dripline and isospin symmetry (breaking). PhD ThesesYuliia Hrabar, Decay Modes of Exotic Nuclei, November 2024Jnaneswari Gellanki, Comprehensive Gamma-ray Spectroscopy of  62Zn and Studies of Nilsson Parameters in the Mass A=60 Region, September 2013Robert Hoischen, Isotope-selective Spectroscopy: Fast Timing R&D and f

https://www.particle-nuclear.lu.se/experimental-particle-and-nuclear-physics/nuclear-structure/proton-dripline-studies/theses - 2026-09-27

Proton Dripline Publications

Sampling publications on N~Z nuclei, isospin symmetry (breaking), and proton radioactivity. OverviewD. Rudolph et al., Exotic Decay Modes in Rotating Nuclei, Nucl. Phys. A 752, 241c (2005)J. Ekman et al., Mirror Symmetry in the Upper fp Shell, Mod. Phys. Lett. A 20, 2977 (2005)D. Rudolph, Studies of N~Z Nuclei Beyond 56Ni, in Achievements with the EUROBALL Spectrometer 1997-2003, 2004.D. Rudolph,

https://www.particle-nuclear.lu.se/experimental-particle-and-nuclear-physics/nuclear-structure/proton-dripline-studies/publications - 2026-09-27

Bachelor's programme

The Bachelor's programme in physics is a three year programme resulting in a Bachelor of Science degree. The programme starts by giving you the physics and math tools you need to further your education, and as you specialize more and more the programme becomes flexible, giving you the opportunity to choose among the courses you are most interested in. There is a specialization for Theoretical Phys

https://www.particle-nuclear.lu.se/education/bachelors-programme - 2026-09-27

The ISOLDE experiment

The experiments at ISOLDE cover questions over a variety of fields stretching from nuclear physics, nuclear astrophysics and laser physics to solid-state physics and medical physics. Our experiments are focused on nuclear astrophysics and nuclear physics at the higher end of the provided energy range. ISOLDE is CERN:s radioactive beam facility and provides radioactive ion beams using the Isotope S

https://www.particle-nuclear.lu.se/experimental-particle-and-nuclear-physics/nuclear-astrophysics-reactions/ISOLDE - 2026-09-27

The R3B experiment at FAIR

The Reactions with Relativistic Radioactive Beams (R3B) experiment at FAIR focuses on kinematically complete measurements, primarily involving atomic nuclei far from stability, using relativistic beams. The Facility for Anti-proton and Ion Research (FAIR), which R3B is part of, is a new convention bound international accelerator facility where Sweden is a share holder and a founder member. The R3B

https://www.particle-nuclear.lu.se/experimental-particle-and-nuclear-physics/nuclear-astrophysics-reactions/r3b - 2026-09-27

Master's programme

After a Bachelor's degree in physics, you may want to continue to broaden and deepen your knowledge and apply for a two-year master's degree in physics. There are two specialisations on the master programme in physics centered around research at our division, which are offered by the Department of Physics: the master programme with specialisation in Theoretical physics, and the master programme wi

https://www.particle-nuclear.lu.se/education/masters-programme - 2026-09-27

Fundamental Physics at ESS

We are working towards establishing a research program in fundamental physics at ESS together with colleagues. Our interest is primarily in neutrino physics at low energies, but we are also involved in exploring the possibilities for a long-baseline neutrino oscillation experiment. When the ESS linear accelerator reaches its nominal power it will be the primary high-intensity proton machine in the

https://www.particle-nuclear.lu.se/experimental-particle-and-nuclear-physics/nuclear-astrophysics-reactions/ESS - 2026-09-27

Post-graduate programme

The Division of Particle and Nuclear Physics offers a postgraduate education - a PhD education - equivalent to four years of full-time studies (240 credits or ECTS). The programme consists of both courses and thesis work. The research thesis can be written in the wide range of subjects, represented in the different research areas represented in the Division. After completion, the student receives

https://www.particle-nuclear.lu.se/education/post-graduate-programme - 2026-09-27