Infrared dark clouds (IRDCs) are thought to be potential hosts of the elusive early phases of high-mass star formation. Here we conduct an in-depth kinematic analysis of one such IRDC, G034.43+00.24 (Cloud F), using high sensitivity and high spectral resolution IRAM-30m N2H+ (1 − 0) and C18O (1 − 0) observations. To disentangle the complex velocity structure within this cloud we use Gaussian decomposition and hierarchical clustering algorithms. We find that four distinct coherent velocity components are present within Cloud F. The properties of these components are compared to those found in a similar IRDC, G035.39-00.33 (Cloud H). We find that the components in both clouds have: high densities (inferred by their identification in N2H+), tr...
Infrared-dark clouds (IRDCs) are believed to be the birthplaces of rich clusters and thus contain th...
We utilize multiple-waveband continuum and molecular-line data of CO isotopes to study the dynamical...
Everything we know about other galaxies is based on light from massive stars, yet, in our own Galaxy...
Infrared dark clouds (IRDCs) are thought to be potential hosts of the elusive early phases of high-m...
Infrared dark clouds (IRDCs) are thought to be potential hosts of the elusive early phases of high-m...
To probe the initial conditions for high-mass star and cluster formation, we investigate the propert...
Context. Infrared dark clouds are massive, dense clouds seen in extinction against the IR Galactic b...
This thesis contains a detailed study of the kinematics and physical properties of a potential site ...
Context. Atomic and molecular cloud formation is a dynamical process. However, kinematic signatures ...
Infrared Dark Clouds (IRDCs) are unique laboratories to study the initial conditions of high-mass st...
We present new Plateau de Bure Interferometer observations of a region in the filamentary infrared-d...
Context. Infrared dark clouds are massive, dense clouds seen in extinction against the IR Galactic b...
Infrared dark clouds (IRDCs) are cold, dense regions of high (optical and infrared) extinction, beli...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
Infrared-dark clouds (IRDCs) are believed to be the birthplaces of rich clusters and thus contain th...
We utilize multiple-waveband continuum and molecular-line data of CO isotopes to study the dynamical...
Everything we know about other galaxies is based on light from massive stars, yet, in our own Galaxy...
Infrared dark clouds (IRDCs) are thought to be potential hosts of the elusive early phases of high-m...
Infrared dark clouds (IRDCs) are thought to be potential hosts of the elusive early phases of high-m...
To probe the initial conditions for high-mass star and cluster formation, we investigate the propert...
Context. Infrared dark clouds are massive, dense clouds seen in extinction against the IR Galactic b...
This thesis contains a detailed study of the kinematics and physical properties of a potential site ...
Context. Atomic and molecular cloud formation is a dynamical process. However, kinematic signatures ...
Infrared Dark Clouds (IRDCs) are unique laboratories to study the initial conditions of high-mass st...
We present new Plateau de Bure Interferometer observations of a region in the filamentary infrared-d...
Context. Infrared dark clouds are massive, dense clouds seen in extinction against the IR Galactic b...
Infrared dark clouds (IRDCs) are cold, dense regions of high (optical and infrared) extinction, beli...
Context. Infrared dark clouds (IRDCs) are promising sites to study the earliest formation stages of ...
Infrared dark clouds are kinematically complex molecular structures in the interstellar medium that ...
Infrared-dark clouds (IRDCs) are believed to be the birthplaces of rich clusters and thus contain th...
We utilize multiple-waveband continuum and molecular-line data of CO isotopes to study the dynamical...
Everything we know about other galaxies is based on light from massive stars, yet, in our own Galaxy...