Gas Flows in a Prototypical Galactic-Scale Filament
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Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Program
Modellbyggare
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Sammanfattning
The study of the filamentary interstellar medium (ISM) is crucial for understanding
both star formation and galactic evolution. Filamentary structures that exceed 100
parsecs present optimal conditions for studying the formation of stars, star clusters,
and large-scale dynamical filamentary evolution. The work presented in this thesis
mainly utilized molecular line transitions observed with the Atacama Large Millimeter
Array (ALMA) to analyze the gas kinematics of the prototypical galactic-scale
filament Nessie. We describe the kinematic properties of the filaments traced by
the HNC and N2H+ molecules from 100-parsec to sub-parsec scales. The general
structure of the Nessie filament was shown to extend even further than established
in prior studies, yet remains a single coherent structure. There were also clear signs
of large-scale velocity gradients indicating galactic-scale interactions with the filament.
We further quantify the velocity gradients along the main spline tracing the
filamentary structure to estimate the mass flows onto parsec-scale gravitationally
collapsing clumps. These were characterized by a directional flip of the mass flow
direction along the spline associated with a local density peak. Using these signatures,
we propose 11 candidates for such clumps and estimate the mass inflow
rates toward them. The resulting mass flows showed consistency with evolutionary
timescales of these clumps. This clearly demonstrates that Nessie is a highly
dynamic environment, rich in potential sites for star formation.
Beskrivning
Ämne/nyckelord
ISM, filaments, Nessie
