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  • Other Sources  (3)
  • Kosmogonie {Astronomie}  (3)
  • Univ. Köln  (3)
  • English  (2)
  • German  (1)
  • German
  • Turkish
  • 1
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    Univ. Köln
    Publication Date: 2021-03-29
    Description: The understanding of gravitational stability of galactic disks against star formation, the interplay of atomic and molecular components of the interstellar medium in a galaxy and its physical conditions, namely temperature and density, are important to gain a deeper insight into star formation. Nearby galaxies like the spiral galaxy M51 or the southern starburst galaxies NGC4945 and Circinus offer excellent opportunities to investigate these topics over a complete galactic disk or parts of the galaxy. A suitable tracer to study the molecular part of the gaseous component of galaxies is the CO molecule. It is the second most abundant molecule after H2 in the interstellar medium, its lower lying transition are excited at typical conditions of molecular clouds and the rotational transitions lie in the radio window. Thus, CO emission can penetrate throughout galactic disks and is observable from the ground. Apart from complementary data from the literature, we use observations of 12CO 21, 12CO 4--3, and 13CO 2--1 in this thesis. Additionally, the [CI] 3P1-3P0 fine structure line was observed to study the physical conditions in the central regions of galaxies. In the first part of this thesis, the nearby spiral galaxy M51 is used as a sample source to investigate the onset of star formation. CO, HI, radio-continuum, dust, and stellar maps of M51 are combined to study star formation rate, the H2/HI transition, the gas-to-dust ratios, the stability of the disk against gravitational collapse, and properties of the giant molecular clouds. Parts of the results have been published in Astronomy and Astrophysics (461,143) in 2007 and are submitted to Astronomy and Astrophysics, 2008 for publication. We use the first complete 12CO 2--1 map of M51 including the companion galaxy NGC5195 observed with HERA at the IRAM-30m telescope to trace the molecular gas. Complementary HI VLA data is used to study the atomic gas distribution and the combined total gas surface density ...
    Description: thesis
    Keywords: 523 ; TEG 000 ; Kosmogonie {Astronomie}
    Language: English
    Type: monograph , publishedVersion
    Format: 180 S.
    Format: application/pdf
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  • 2
    facet.materialart.
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    Univ. Köln
    Publication Date: 2021-03-29
    Description: In the framework of this PhD thesis, the study of the distribution of an extended mass close to the super-massive black hole (SMBH) at the centre of our Galaxy is addressed using observational data and theoretical modelling. The main emphasize is on establishing a distinction between the fraction of dark mass present in the form of a black hole and that in an extended form. Despite the significant observational and theoretical progress in the understanding of SMBHs in the last ten years, the formation of SMBHs and the interplay with their host galaxy are still poorly understood. The work presented here extends our understanding of the dynamics in the vicinity of the SMBH. Already in 1974, it was proposed that the radio source SgrA* could be a SMBH. With observations during the following years, it became more clear that the centre of our Galaxy hides an amount of dark mass close to 3 million solar masses. However, the strongest evidence for the existence of a SMBH, was only after it became possible to trace for the first time stellar orbits of fast moving stars, the so-called S-stars, around SgrA*. This was achievable using the SHARP near-infrared speckle camera at la Silla in Chile as well as the near-infrared camera NAOS/CONICA at the Very Large Telescope (VLT) at Paranal in Chile.
    Description: thesis
    Keywords: 523 ; TEG 000 ; TIC 000 ; TEG 440 ; Kosmogonie {Astronomie} ; Sternhaufen {Astronomie} ; Schwarze Löcher {Astronomie: Kosmogonie}
    Language: English
    Type: monograph , publishedVersion
    Format: 122 S.
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  • 3
    Publication Date: 2021-03-29
    Description: In this thesis I study the physical and chemical properties of molecular gas in star forming regions. This work takes advantage of the newly developed CONDOR receiver, which allows spectrally resolved observations of emission lines at frequencies of about 1.4 THz. Thus the thesis contains observational data obtained with CONDOR as well as observations motivated by the science one can do with receivers at terahertz frequencies are largely included. In the massive star forming region NGC 2024, seven emission lines of 12CO and 13CO have been observed, including 12CO J=13-12 (f=1.497 THz) observations with CONDOR. These high-J CO data reveal a thin layer of hot (~300 K) and dense (~10e6 cm-3) molecular gas, which has not been detected with any other tracer before. This newly discovered component is located at the interface between an HII region and the molecular cloud. Furthermore, the narrow line width indicates that this layer is heated by radiation rather than by shocks. On the background of well established physical scenarios, such as the ''Blister Model'' and the PDR scenario, I developed a model of NGC 2024, using radiative transfer computations. This model explains both, the spatial distribution of density and temperature along the line of sight and the velocity structure of the source...
    Description: Zsfassung in dt. und engl. Sprache
    Description: thesis
    Keywords: 523 ; TII 040 ; TEG 000 ; TJM 000 ; Physikalische Eigenschaften {Astronomie: Interstellare Materie} ; Kosmogonie {Astronomie} ; Kosmochemie {Weltraumforschung}
    Language: German
    Type: monograph , publishedVersion
    Format: 163 S.
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