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Spiral density wave theory attempts to describe the spiral pattern in spiral galaxies in terms of a long-lived wave structure with a constant pattern speed in order to avoid the winding dilemma. The pattern is consequently a rigidly…

Astrophysics of Galaxies · Physics 2015-06-03 Robert J. J. Grand , Daisuke Kawata , Mark Cropper

The density-wave theory of spiral structure proposes that star formation occurs in or near a spiral-shaped region of higher density that rotates rigidly within the galactic disk at a fixed pattern speed. In most interpretations of this…

Spiral density wave theory attempts to describe the spiral pattern in spiral galaxies in terms of a long-lived wave structure with a constant pattern speed in order to avoid the winding dilemma. The pattern is consequently a rigidly…

Astrophysics of Galaxies · Physics 2015-05-30 Daisuke Kawata , Robert J. J. Grand , Mark Cropper

In the density wave theory of spiral structure, the grand-design two-armed spiral pattern is taken to rotate rigidly in a galactic disc with a constant, definite pattern speed. The observational measurement of the pattern speed of the…

Astrophysics of Galaxies · Physics 2016-06-01 Soumavo Ghosh , Chanda J Jog

The density-wave theory of galactic spiral-arm structure makes a striking prediction that the pitch angle of spiral arms should vary with the wavelength of the galaxy's image. The reason is that stars are born in the density wave but move…

We test whether the spiral patterns apparent in many large disk galaxies should be thought of as dynamical features that are stationary in a co-rotating frame for > t_{dyn}, as implied by the density wave approach for explaining spiral…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-28 Kelly Foyle , Hans-Walter Rix , Clare Dobbs , Adam Leroy , Fabian Walter

The spiral arms spanning disk galaxies are believed to be created by density waves that propagate through galactic disks. We present a novel method of finding the co-rotation radius where the spiral arm pattern speed matches the velocities…

There are two theories of stellar spiral arms in isolated disc galaxies that model stellar spiral arms with different longevities: quasi-stationary density wave theory, which characterises spirals as rigidly rotating, long-lived patterns…

Astrophysics of Galaxies · Physics 2016-05-04 Junichi Baba , Kana Morokuma-Matsui , Yusuke Miyamoto , Fumi Egusa , Nario Kuno

The density wave theory predicted some physical offsets among different tracers of star formation. To test this prediction, here we compiled data on 40 galaxies searched observationally for a physical offset between spiral arm tracers, and…

Astrophysics of Galaxies · Physics 2019-11-21 Jacques P Vallee

Theories of stellar spiral arms in disk galaxies can be grouped into two classes based on the longevity of a spiral arm. Although the quasi-stationary density wave theory supposes that spirals are rigidly-rotating, long-lived patterns, the…

Astrophysics of Galaxies · Physics 2015-07-15 Junichi Baba , Kana Morokuma-Matsui , Fumi Egusa

Context: Several spiral galaxies, as beautifully exhibited by the case of NGC 6946, display a prominent large-scale spiral structure in their gaseous outer disk. Such structure is often thought to pose a dynamical puzzle, because…

Cosmology and Nongalactic Astrophysics · Physics 2010-09-10 G. Bertin , N. C. Amorisco

Aims: Density waves are often considered as the triggering mechanism of star formation in spiral galaxies. Our aim is to study relations between different star formation tracers (stellar UV and near-IR radiation and emission from HI, CO and…

Astrophysics of Galaxies · Physics 2017-03-29 Peeter Tenjes , Taavi Tuvikene , Antti Tamm , Rain Kipper , Elmo Tempel

Recent JWST observations have revealed the prevalence of spiral structures at $z > 1$. Unlike in the local Universe, the origin and the consequence of spirals at this epoch remain unexplored. We use public JWST/NIRCam data from the…

Theoretical studies on the response of interstellar gas to a gravitational potential disc with a quasi-stationary spiral arm pattern suggest that the gas experiences a sudden compression due to standing shock waves at spiral arms. This…

Astrophysics of Galaxies · Physics 2016-12-14 Fumi Egusa , Erin Mentuch Cooper , Jin Koda , Junichi Baba

The rotation velocity of the spiral pattern of the Galaxy is determined by direct observation of the birthplaces of open clusters of stars in the galactic disk as a function of their age. Our measurement does not depend on any specific…

Astrophysics · Physics 2009-11-10 W. S. Dias , J. R. D. Lépine

Spiral arms are the defining features of broad morphological classes of disc galaxies, but their nature and influence on galaxy evolution is still under debate. A key diagnostic for their nature is the spiral arm pattern speed: the radial…

Instrumentation and Methods for Astrophysics · Physics 2025-12-22 Robert J. J. Grand , Martin Roth

The theoretical understanding of density waves in disk galaxies starts from the classical WKB perturbative analysis of tight-winding perturbations, the key assumption being that the potential due to the density wave is approximately radial.…

Astrophysics of Galaxies · Physics 2011-09-14 X. Hernandez , I. Puerari

The dynamical nature and formation mechanism(s) of galactic spiral arms remain long-standing problems in astrophysics. Most theoretical work is based on analytic calculations or idealised simulations, which has yielded several theories of…

Deep HI observations of the outer parts of disc galaxies demonstrate the frequent presence of extended, well-developed spiral arms far beyond the optical radius. To understand the nature and the origin of such outer spiral structure, we…

Astrophysics of Galaxies · Physics 2015-05-19 S. A. Khoperskov , G. Bertin

We have imaged a sample of 20 spiral galaxies in H$\alpha$ and in the near-infrared K band (2.2 um), in order to determine the location and strength of star formation in these objects with respect to perturbations in the old stellar…

Astrophysics · Physics 2009-11-07 Marc S. Seigar , Phil A. James
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