Knowledge of the three-dimensional structure of Galactic molecular clouds is important for understanding how clouds are affected by processes such as turbulence and magnetic fields and how this structure effects star formation within them. Great progress has been made in this field with the arrival of the Gaia mission, which provides accurate distances to $\sim10^{9}$ stars. Combining these distances with extinctions inferred from optical-IR, we recover the three-dimensional structure of 16 Galactic molecular cloud complexes at $\sim1$pc resolution using our novel three-dimensional dust mapping algorithm \texttt{Dustribution}. Using \texttt{astrodendro} we derive a catalogue of physical parameters for each complex. We recover structures wit...
In this thesis, I present a new non-parametric model for inferring the three-dimensional (3D) distr...
We study the properties of giant molecular clouds (GMCs) from a smoothed particle hydrodynamics sim...
Using hydrodynamical simulations of entire galactic discs similar to the Milky Way (MW), reaching 4....
Data files for Dharmawardena et al., accepted MNRAS, 2022, The three-dimensional structure of Galact...
We dendrogram the Leike et al. 2020 3D dust map, leveraging its $\sim 1$ pc spatial resolution to pr...
We leverage the 1 pc spatial resolution of the Leike et al. three-dimensional (3D) dust map to chara...
The new Gaia data release (EDR3) with improved astrometry has opened a new era in studying our Milky...
The unprecedented astrometry from Gaia\u27s second data release (DR2) provides us with an opportunit...
High-resolution 3D maps of interstellar dust are critical for probing the underlying physics shaping...
We present a catalogue of Giant Molecular Clouds (GMCs) in M33, extracted from cold dust continuum e...
We report results of a near--infrared imaging survey of L977, a dark cloud in Cygnus seen in project...
Aims. Mapping the interstellar medium in 3D provides a wealth of insights into its inner working. Th...
Three-dimensional (3D) maps of Galactic interstellar dust are a tool for a wide range of uses. We ai...
We introduce a model for the large-scale, global 3D structure of molecular clouds. Motivated by the ...
We present new observations of a 2' field in the north-eastern spiral arm of M31. In the 0.8 x 3.6 k...
In this thesis, I present a new non-parametric model for inferring the three-dimensional (3D) distr...
We study the properties of giant molecular clouds (GMCs) from a smoothed particle hydrodynamics sim...
Using hydrodynamical simulations of entire galactic discs similar to the Milky Way (MW), reaching 4....
Data files for Dharmawardena et al., accepted MNRAS, 2022, The three-dimensional structure of Galact...
We dendrogram the Leike et al. 2020 3D dust map, leveraging its $\sim 1$ pc spatial resolution to pr...
We leverage the 1 pc spatial resolution of the Leike et al. three-dimensional (3D) dust map to chara...
The new Gaia data release (EDR3) with improved astrometry has opened a new era in studying our Milky...
The unprecedented astrometry from Gaia\u27s second data release (DR2) provides us with an opportunit...
High-resolution 3D maps of interstellar dust are critical for probing the underlying physics shaping...
We present a catalogue of Giant Molecular Clouds (GMCs) in M33, extracted from cold dust continuum e...
We report results of a near--infrared imaging survey of L977, a dark cloud in Cygnus seen in project...
Aims. Mapping the interstellar medium in 3D provides a wealth of insights into its inner working. Th...
Three-dimensional (3D) maps of Galactic interstellar dust are a tool for a wide range of uses. We ai...
We introduce a model for the large-scale, global 3D structure of molecular clouds. Motivated by the ...
We present new observations of a 2' field in the north-eastern spiral arm of M31. In the 0.8 x 3.6 k...
In this thesis, I present a new non-parametric model for inferring the three-dimensional (3D) distr...
We study the properties of giant molecular clouds (GMCs) from a smoothed particle hydrodynamics sim...
Using hydrodynamical simulations of entire galactic discs similar to the Milky Way (MW), reaching 4....