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Lund University

Master Programme in Physics, Experimental Particle and Nuclear Physics

<p>Are you fascinated by the fundamental principles of our world: the smallest constituents of matter and what forces act on them? This Master programme enables you to take part in the hunt for new knowledge via international experiments such as those at CERN and FAIR.</p><p>In this Master programme, you will gain a…

  • Higher education
  • Information unavailable
  • 27 August 2026
  • Information unavailable
  • Information unavailable
  • 100 %

Overview

<p>Are you fascinated by the fundamental principles of our world: the smallest constituents of matter and what forces act on them? This Master programme enables you to take part in the hunt for new knowledge via international experiments such as those at CERN and FAIR.</p><p>In this Master programme, you will gain an understanding of the fundamental principles that govern the structure of the entire physical world, through the mathematical theories and experimental data that reveal the physics of the known universe. Among other things, the Master programme will provide you with specialised knowledge of the standard model of physics, including its fundamental potential to explain the basic principles of physics, as well as its limitations. You will gain insight into the research that strives for explanations outside the framework of the standard model, for example with regard to the universe’s dark matter. You can also learn about the quantum mechanical nature of the nuclei: from studies of its many different structures to the search for new super-heavy elements. And even what happens when it melts into a quark-gluon plasma, the extremely energy-dense matter which characterised the early universe.</p> <p>The programme offers a wide variety of master projects that cover everything from carrying out experiments and data analysis, to e-science and hardware development and testing. We are involved in the ATLAS and ALICE experiments at the LHC at CERN and their upgrades. Dark Matter is the majority of the matter in the Universe, but what is it made of? The LDMX experiment is being prepared to answer that question. The HIBEAM/NNBAR collaboration is a planned international programme of searches for neutron conversions between matter and antimatter at ESS. Research on the stability and structure of atomic nuclei is conducted within the international FAIR-NUSTAR and CERN-ISOLDE collaborations, but also at other facilities in Europe and the USA. In applied nuclear physics, we study anthropogenic radioactivity in the environment.</p> <h2>Programme structure</h2> <p>The programme includes two compulsory courses, one in quantum mechanics and one on quantum physics in research and society. During your first year of study, you will also choose between a number of other courses, for example in experimental tools, modern experimental particle physics or advanced nuclear physics.</p> <p>During your second year of study, you will continue to build your expertise on the basis of your personal preferences. For example, you can take a course on theoretical particle physics. Your degree project will be equivalent to either 30 or 60 credits and will be done in a research group. During the degree project work, you have the opportunity to be an active member of an international research team and, in certain cases, to visit the experiments or take part in workshops and meetings.</p> <h2>Career prospects</h2> <p>The Master programme provides a good basis for research studies in particle and nuclear physics and prepares you to work in the major international research laboratories. Both the research facilities in Lund - the MAX IV Laboratory and ESS (European Spallation Source) - and those around the world. </p> <p>A master’s degree in particle and nuclear physics also prepares you well for a career path outside of academia; many graduates go on to jobs in fields such as information and communications technology, or e-science, where there is a need for expertise in advanced programming and modelling as well as the processing of large amounts of data.</p><p>https://www.fysik.lu.se/en/master-in-experimental-particle-and-nuclear-physics</p>

Admission scores

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Entry requirements

Bachelor’s degree of at least 180 credits in physics or the equivalent. The degree must include at least 90 credits in physics. Proficiency in English equivalent to English 6/B from Swedish upper-secondary school.

The text is reproduced from the Susa source. Antagningsdata does not map GY11 and GY25 or assess personal eligibility.

Source, measure and data quality
Source
Skolverket Susa-navet
Period
2026-08-27
Measure
Entry-requirement text reproduced from the published Susa data; no personal eligibility assessment is made.
Population
Education offering e.uoh.lu.nafyk.18064.20262
Last checked
2026-09-23T10:38:33.477975+00:00
Limitation
Antagningsdata does not map GY11 and GY25. General and specific conditions are not separated without structured source data.

Programme content

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Study structure

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Application and important dates

  1. Programme or course starts
  2. Programme or course ends

Salary and salary distribution

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Common occupations after graduation

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Students

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Geographical background

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Previous upper-secondary schools and programmes

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Completion and outcomes

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About the provider

Lund University

Provider for the published education offering.

Sources and data quality

Education facts for the selected offering come from Skolverket Susa-navet.

Retrieved . Published . Times are shown in Swedish local time.

Source identity and publication version
Publication version
8e217193-f5fa-4778-b085-a4521fd03e8d
Education identity in the source
i.uoh.lu.nafyk.18064.20262
Offering identity in the source
e.uoh.lu.nafyk.18064.20262
Education-form source code
HS
Education code in the source
NAFYK
Change time according to the source
2026-02-10T09:13:06

The provider, education and education offering are separate identities. Application information should be checked on the official website. Supplementary statistics have not been obtained from this source.