Abstract
We analyse the spiral structure that results in a numerical simulation of a galactic disc with stellar and gaseous components evolving in a potential that includes an axisymmetric halo and bulge. We perform a second simulation without the gas component to observe how it affects the spiral structure in the disc. To quantify this, we use a Fourier analysis and obtain values for the pitch angle and the velocity of the self-excited spiral pattern of the disc. The results show a tighter spiral in the simulation with gaseous component. The spiral structure is consistent with a superposition of waves, each with a constant pattern velocity in given radial ranges.
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Dolores Mata-Chávez, M., Gómez, G. C., & Puerari, I. (2014). Analysis of the spiral structure in a simulated galaxy. Monthly Notices of the Royal Astronomical Society, 444(4), 3756–3760. https://doi.org/10.1093/mnras/stu1672
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