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Precision Measurements at Extreme Conditions

Prof. Peter Fierlinger

Research Field

Our research deals with experiments that should help to understand properties of the early Universe. We currently focus on the nature of the excess of matter versus antimatter. In most scenarios that describe this so-called baryogenesis, new sources of broken symmetries in the early Universe are required. Electric dipole moments (EDM) of fundamental quantum systems are interesting systems to investigate such new sources of CP (or T) violation in the baryon-sector, beyond the Standard Model of particle physics (SM). Experiments in this field are almost table-top scale, but are nevertheless probing physics at or beyond the reach of the LHC. Alternatively, the asymmetry of baryons could originate from an excess of leptons, which was then transferred to the baryons. Although most models that describe possible procedures for such a process are even further distant from direct experimental investigation, there could be an intriguing possibility to find a hint for such a phenomenon: the detection of neutrino-less double beta decay. Such an observation would (next to other fundamental consequences) show that neutrinos are Majorana-particles. This in turn would be an important feature for theories to generate symmetry breaking in the leptonic sector through the decay of a heavy partner of the light neutrino.

Address/Contact

James-Franck-Str. 1/I
85748 Garching b. München
sekretariat.fierlinger@tum.de

Members of the Research Group

Professor

Office

Scientists

Students

Other Staff

Teaching

Course with Participations of Group Members

Titel und Modulzuordnung
ArtSWSDozent(en)Termine
Physics for Future Presidents
eLearning-Kurs
Zuordnung zu Modulen:
VO 2 Fierlinger, P. Mi, 18:30–20:00
Studentische Vollversammlungen - Physik
eLearning-Kurs
Diese Lehrveranstaltung ist keinem Modul zugeordnet.
VO 0.1 Wunderl, P.
Teilchenphysik mit Neutronen
eLearning-Kurs
Zuordnung zu Modulen:
VO 2 Fierlinger, P.
Journal Club zu aktuellen Themen in der Astro- und Teilchenphysik
Zuordnung zu Modulen:
PS 2 Fierlinger, P. Mo, 14:30–16:00, virtuell
Übung zu Physics for Future Presidents
Zuordnung zu Modulen:
UE 2 Fierlinger, P.
Übung zu Teilchenphysik mit Neutronen
Zuordnung zu Modulen:
UE 2
Leitung/Koordination: Fierlinger, P.
Mentoren informieren zur Schwerpunktwahl im Bachelorstudiengang Physik (Kern-, Teilchen- und Astrophysik [KTA])
aktuelle Informationen
Zuordnung zu Modulen:
OV 0.1 Fierlinger, P.
Neutronenseminar
Zuordnung zu Modulen:
SE 2 Fierlinger, P. Mo, 13:30–15:00, ORIGINS 101

Current and Finished Theses in the Group

Mapping the Biomagnetic Activity of the Human Heart Using Quantum Sensors
Abschlussarbeit im Bachelorstudiengang Physik
Themensteller(in): Peter Fierlinger
Building up an electrostatic particle storage ring for fundamental research
Abschlussarbeit im Masterstudiengang Physik (Kern-, Teilchen- und Astrophysik)
Themensteller(in): Peter Fierlinger
Towards a test setup for sodium based magnetometry
Abschlussarbeit im Bachelorstudiengang Physik
Themensteller(in): Peter Fierlinger
Ion-optics for an Electrostatic Storage Ring for Fundamental Physics Measurements
Abschlussarbeit im Masterstudiengang Physik (Kern-, Teilchen- und Astrophysik)
Themensteller(in): Peter Fierlinger
Optimization of the Signal Quality of Fetal Magnetocardiography
Abschlussarbeit im Bachelorstudiengang Physik
Themensteller(in): Peter Fierlinger
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