Jelena Aleksić Aleksić Optimized Dark Matter Searches in Deep Observations of Segue 1 with MAGIC

Optimized Dark Matter Searches in Deep Observations of Segue 1 with MAGIC

von Jelena Aleksić

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Beschreibung

This thesis presents the results of indirect dark matter searches in the gamma-ray sky of the near Universe, as seen by the MAGIC Telescopes. The author has proposed and led the 160 hours long observations of the dwarf spheroidal galaxy Segue 1, which is the deepest survey of any such object by any Cherenkov telescope so far. Furthermore, she developed and completely characterized a new method, dubbed “Full Likelihood”, that optimizes the sensitivity of Cherenkov instruments for detection of gamma-ray signals of dark matter origin. Compared to the standard analysis techniques, this novel approach introduces a sensitivity improvement of a factor of two (i.e. it requires 4 times less observation time to achieve the same result). In addition, it allows a straightforward merger of results from different targets and/or detectors.

By selecting the optimal observational target and combining its very deep exposure with the Full Likelihood analysis of the acquired data, the author has improved the existing MAGIC bounds to the dark matter properties by more than one order of magnitude. Furthermore, for particles more massive than a few hundred GeV, those are the strongest constraints from dwarf galaxies achieved by any gamma-ray instrument, both ground-based or space-borne alike.


This thesis presents the results of indirect dark matter searches in the gamma-ray sky of the near Universe, as seen by the MAGIC Telescopes. The author has proposed and led the 160 hours long observations of the dwarf spheroidal galaxy Segue 1, which is the deepest survey of any such object by any Cherenkov telescope so far. Furthermore, she developed and completely characterized a new method, dubbed “Full Likelihood”, that optimizes the sensitivity of Cherenkov instruments for detection of gamma-ray signals of dark matter origin. Compared to the standard analysis techniques, this novel approach introduces a sensitivity improvement of a factor of two (i.e. it requires 4 times less observation time to achieve the same result). In addition, it allows a straightforward merger of results from different targets and/or detectors.

By selecting the optimal observational target and combining its very deep exposure with the Full Likelihood analysis of the acquired data, the author has improved the existing MAGIC bounds to the dark matter properties by more than one order of magnitude. Furthermore, for particles more massive than a few hundred GeV, those are the strongest constraints from dwarf galaxies achieved by any gamma-ray instrument, both ground-based or space-borne alike.


Nominated as an outstanding Ph.D. thesis by the Institut de Física d'Altes Energies, Spain Presents the deepest survey of dwarf spheroidal galaxy Segue 1 Outlines the analysis optimized for dark matter searches with Cherenkov telescopes Provides the most constraining bounds to dark matter properties from satellite galaxies above a few hundred GeV Includes supplementary material: sn.pub/extras

Autor*in

Jelena Aleksić

Themen in »Optimized Dark Matter Searches in Deep Observations of Segue 1 with MAGIC«

Cherenkov telescopes Dark matter search Dwarf spheroidal galaxies Full Likelihood method Gamma-ray astronomy Indirect dark matter searches MAGIC Telescopes Segue 1

Stimmen zu »Optimized Dark Matter Searches in Deep Observations of Segue 1 with MAGIC«

Details

ISBN: 9783319231235
Verlag: Springer International Publishing
Erscheinung: 06.11.2015

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