Elmegreen, B. G. & Scalo, J. Interstellar turbulence I: observations and processes. Annu. Rev. Astron. Astrophys. 42, 211–273 (2004).
Mac Low, M.-M. The energy dissipation rate of supersonic, magnetohydrodynamic turbulence in molecular clouds. Astrophys. J. 524, 169–178 (1999).
Utomo, D., Blitz, L. & Falgarone, E. The origin of interstellar turbulence in M33. Astrophys. J. 871, 17 (2019).
Mac Low, M.-M. & Klessen, R. S. Control of star formation by supersonic turbulence. Rev. Mod. Phys. 76, 125–194 (2004).
Padoan, P. & Nordlund, Å. The star formation rate of supersonic magnetohydrodynamic turbulence. Astrophys. J. 730, 40 (2011).
Padoan, P., Pan, L., Juvela, M., Haugbølle, T. & Nordlund, Å. The origin of massive stars: the inertial-inflow model. Astrophys. J. 900, 82 (2020).
Petric, A. O. & Rupen, M. P. H I velocity dispersion in NGC 1058. Astron. J. 134, 1952–1962 (2007).
Tamburro, D. et al. What is driving the H I velocity dispersion?. Astron. J. 137, 4424–4435 (2009).
Stone, J. M., Ostriker, E. C. & Gammie, C. F. Dissipation in compressible magnetohydrodynamic turbulence. Astrophys. J. 508, L99–L102 (1998).
Sellwood, J. A. & Balbus, S. A. Differential rotation and turbulence in extended H I disks. Astrophys. J. 511, 660–665 (1999).
Wada, K., Meurer, G. & Norman, C. A. Gravity-driven turbulence in galactic disks. Astrophys. J. 577, 197–205 (2002).
Krumholz, M. R. & Burkhart, B. Is turbulence in the interstellar medium driven by feedback or gravity? An observational test. Mon. Not. R. Astron. Soc. 458, 1671–1677 (2016).
Beattie, J. R., Noer Kolborg, A., Ramirez-Ruiz, E. & Federrath, C. So long Kolmogorov: the forward and backward turbulence cascades in a supernovae-driven, multiphase interstellar medium. Astrophys. J. 994, 193 (2025).
Bacchini, C. et al. Evidence for supernova feedback sustaining gas turbulence in nearby star-forming galaxies. Astron. Astrophys. 641, A70 (2020).
Joung, M. K. R. & Mac Low, M.-M. Turbulent structure of a stratified supernova-driven interstellar medium. Astrophys. J. 653, 1266–1279 (2006).
Heiles, C. H I shells and supershells. Astrophys. J. 229, 533–544 (1979).
Brinks, E. & Bajaja, E. A high-resolution hydrogen-line survey of Messier 31. III. HI holes in the interstellar medium. Astron. Astrophys. 169, 14–42 (1986).
Bagetakos, I. et al. The fine-scale structure of the neutral interstellar medium in nearby galaxies. Astron. J. 141, 23 (2011).
Suad, L. A., Caiafa, C. F., Cichowolski, S. & Arnal, E. M. Galactic H I supershells: kinetic energies and possible origin. Astron. Astrophys. 624, A43 (2019).
Li, C. et al. Evolution and distribution of superbubbles in simulated Milky Way-like galaxies. Mon. Not. R. Astron. Soc. 529, 4073–4086 (2024).
Watkins, E. J. et al. Quantifying the energetics of molecular superbubbles in PHANGS galaxies. Astron. Astrophys. 676, A67 (2023).
Watkins, E. J. et al. PHANGS-JWST first results: a statistical view on bubble evolution in NGC 628. Astrophys. J. Lett. 944, L24 (2023).
Li, D. et al. FAST in space: considerations for a multibeam, multipurpose survey using China’s 500-m aperture spherical radio telescope (FAST). IEEE Microw. Mag. 19, 112–119 (2018).
Koch, E. W. et al. A lack of constraints on the cold opaque H I mass: H I spectra in M31 and M33 prefer multicomponent models over a single cold opaque component. Mon. Not. R. Astron. Soc. 504, 1801–1824 (2021).
Vilardell, F., Ribas, I., Jordi, C., Fitzpatrick, E. L. & Guinan, E. F. The distance to the Andromeda galaxy from eclipsing binaries. Astron. Astrophys. 509, A70 (2010).
Staveley-Smith, L., Sault, R. J., Hatzidimitriou, D., Kesteven, M. J. & McConnell, D. An HI aperture synthesis mosaic of the Small Magellanic Cloud. Mon. Not. R. Astron. Soc. 289, 225–252 (1997).
Stanimirovic, S., Staveley-Smith, L., Dickey, J. M., Sault, R. J. & Snowden, S. L. The large-scale HI structure of the Small Magellanic Cloud. Mon. Not. R. Astron. Soc. 302, 417–436 (1999).
Hatzidimitriou, D. et al. On the properties of H i shells in the Small Magellanic Cloud. Mon. Not. R. Astron. Soc. 360, 1171–1184 (2005).
Orr, M. E., Fielding, D. B., Hayward, C. C. & Burkhart, B. Bursting bubbles: feedback from clustered supernovae and the trade-off between turbulence and outflows. Astrophys. J. 932, 88 (2022).
Block, D. L. et al. An almost head-on collision as the origin of two off-centre rings in the Andromeda galaxy. Nature 443, 832–834 (2006).
Chemin, L., Carignan, C. & Foster, T. H I kinematics and dynamics of Messier 31. Astrophys. J. 705, 1395–1415 (2009).
Yue, N.-N. et al. Resolution-dependent subsonic non-thermal line dispersion revealed by ALMA. Res. Astron. Astrophys. 21, 024 (2021).
Plunkett, A. et al. Data combination: interferometry and single-dish imaging in radio astronomy. Publ. Astron. Soc. Pac. 135, 034501 (2023).
Weaver, R., McCray, R., Castor, J., Shapiro, P. & Moore, R. Interstellar bubbles. II. Structure and evolution. Astrophys. J. 218, 377–395 (1977).
Silich, S. A., Franco, J., Palous, J. & Tenorio-Tagle, G. Three-dimensional calculations of the evolution of superbubbles in a cloudy medium. Astrophys. J. 468, 722–738 (1996).
Braun, R. The distribution and kinematics of neutral gas in M31. Astrophys. J. 372, 54–66 (1991).
Wada, K., Spaans, M. & Kim, S. Formation of cavities, filaments, and clumps by the nonlinear development of thermal and gravitational instabilities in the interstellar medium under stellar feedback. Astrophys. J. 540, 797–807 (2000).
El-Badry, K., Ostriker, E. C., Kim, C.-G., Quataert, E. & Weisz, D. R. Evolution of supernovae-driven superbubbles with conduction and cooling. Mon. Not. R. Astron. Soc. 490, 1961–1990 (2019).
McKee, C. F. & Ostriker, J. P. A theory of the interstellar medium: three components regulated by supernova explosions in an inhomogeneous substrate. Astrophys. J. 218, 148–169 (1977).
Burrows, A. Colloquium: Perspectives on core-collapse supernova theory. Rev. Mod. Phys. 85, 245–261 (2013).
Kim, C.-G. & Ostriker, E. C. Momentum injection by supernovae in the interstellar medium. Astrophys. J. 802, 99 (2015).
Kim, C.-G., Ostriker, E. C. & Raileanu, R. Superbubbles in the multiphase ISM and the loading of galactic winds. Astrophys. J. 834, 25 (2017).
Gentry, E. S., Krumholz, M. R., Dekel, A. & Madau, P. Enhanced momentum feedback from clustered supernovae. Mon. Not. R. Astron. Soc. 465, 2471–2488 (2017).
Leitherer, C. et al. Starburst99: synthesis models for galaxies with active star formation. Astrophys. J. Suppl. Ser. 123, 3–40 (1999).
Krumholz, M. R., McKee, C. F. & Tumlinson, J. The atomic-to-molecular transition in galaxies. II: H I and H2 column densities. Astrophys. J. 693, 216–235 (2009).
Hill, A. S., Mac Low, M.-M., Gatto, A. & Ibáñez-Mejía, J. C. Effect of the heating rate on the stability of the three-phase interstellar medium. Astrophys. J. 862, 55 (2018).
Marchal, A. et al. ROHSA: Regularized Optimization for Hyper-Spectral Analysis. Application to phase separation of 21 cm data. Astron. Astrophys. 626, A101 (2019).
Ianjamasimanana, R., de Blok, W. J. G. & Heald, G. H. Accurate recovery of H I velocity dispersion from radio interferometers. Astron. J. 153, 213 (2017).
Stewart, M. & Federrath, C. A new method for measuring the 3D turbulent velocity dispersion of molecular clouds. Mon. Not. R. Astron. Soc. 509, 5237–5252 (2022).
Dickey, J. M. & Brinks, E. An H i absorption survey of M31 and M33: the mixture of warm and cool phases in the interstellar media of spiral galaxies. Astrophys. J. 405, 153 (1993).
Nieten, C. et al. Molecular gas in the Andromeda galaxy. Astron. Astrophys. 453, 459–475 (2006).
Hughes, A. et al. A comparative study of giant molecular clouds in M51, M33, and the Large Magellanic Cloud. Astrophys. J. 779, 46 (2013).
Hill, A. S. et al. The turbulent warm ionized medium: emission measure distribution and MHD simulations. Astrophys. J. 686, 363–378 (2008).
Haffner, L. M. et al. The warm ionized medium in spiral galaxies. Rev. Mod. Phys. 81, 969–997 (2009).
Opitsch, M. et al. Evidence for non-axisymmetry in M 31 from wide-field kinematics of stars and gas. Astron. Astrophys. 611, A38 (2018).
Li, M., Ostriker, J. P., Cen, R., Bryan, G. L. & Naab, T. Supernova feedback and the hot gas filling fraction of the interstellar medium. Astrophys. J. 814, 4 (2015).
Caldwell, N., Raymond, J. C., Long, K. S. & Lee, M. G. Spectroscopy of supernova remnants and candidates in M31. Astrophys. J. 983, 150 (2025).
Kang, Y., Bianchi, L. & Rey, S.-C. An ultraviolet study of star-forming regions in M31. Astrophys. J. 703, 614–627 (2009).
Fletcher, A., Berkhuijsen, E. M., Beck, R. & Shukurov, A. The magnetic field of M31 from multi-wavelength radio polarization observations. Astron. Astrophys. 414, 53–67 (2004).
Kitchatinov, L. L. & Rüdiger, G. Seed fields for galactic dynamos by the magnetorotational instability. Astron. Astrophys. 424, 565–570 (2004).
Gressel, O., Elstner, D. & Ziegler, U. Towards a hybrid dynamo model for the Milky Way. Astron. Astrophys. 560, A93 (2013).
Krumholz, M. R., Kruijssen, J. M. D. & Crocker, R. M. A dynamical model for gas flows, star formation and nuclear winds in galactic centres. Mon. Not. R. Astron. Soc. 466, 1213–1233 (2017).
Krumholz, M. R., Burkhart, B., Forbes, J. C. & Crocker, R. M. A unified model for galactic discs: star formation, turbulence driving, and mass transport. Mon. Not. R. Astron. Soc. 477, 2716–2740 (2018).
Jiang, P. et al. The fundamental performance of FAST with 19-beam receiver at L band. Res. Astron. Astrophys. 20, 064 (2020).
Jiao, S. et al. J-comb: an image fusion algorithm to combine observations covering different spatial frequency ranges. Sci. China Phys. Mech. Astron. 65, 299511 (2022).
Daigle, A., Joncas, G. & Parizeau, M. Automatic detection of expanding H I shells in the Canadian Galactic Plane Survey data. Astrophys. J. 661, 285–303 (2007).
Ehlerová, S. & Palouš, J. H I shells in the outer Milky Way. Astron. Astrophys. 437, 101–112 (2005).
Ehlerová, S. & Palouš, J. HI shells in the Leiden/Argentina/Bonn HI survey. Astron. Astrophys. 550, A23 (2013).
Corbelli, E., Lorenzoni, S., Walterbos, R., Braun, R. & Thilker, D. A wide-field H I mosaic of Messier 31. II. The disk warp, rotation, and the dark matter halo. Astron. Astrophys. 511, A89 (2010).
Zhang, X., Chen, B., Chen, P., Sun, J. & Tian, Z. The rotation curve and mass distribution of M31. Mon. Not. R. Astron. Soc. 528, 2653–2666 (2024).
Hopkins, A. M. & Beacom, J. F. On the normalization of the cosmic star formation history. Astrophys. J. 651, 142–154 (2006).
Zapartas, E. et al. Delay-time distribution of core-collapse supernovae with late events resulting from binary interaction. Astron. Astrophys. 601, A29 (2017).
Dickey, J. M. & Brinks, E. An HI absorption line survey of Messier 31. Mon. Not. R. Astron. Soc. 233, 781–790 (1988).
The CASA Team et al. CASA, the Common Astronomy Software Applications for radio astronomy. Publ. Astron. Soc. Pac. 134, 114501 (2022).
The Astropy Collaboration et al. Astropy: a community Python package for astronomy. Astron. Astrophys. 558, A33 (2013).
The Astropy Collaboration et al. The Astropy Project: building an open-science project and status of the v2.0 core package. Astron. J. 156, 123 (2018).
The Astropy Collaboration et al. The Astropy Project: sustaining and growing a community-oriented open-source project and the latest major release (v5.0) of the core package. Astrophys. J. 935, 167 (2022).