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相关论文: NGC 4138 - A Case Study in Counterrotating Disk Fo…

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We probe the HI properties and the gas environments of three early-type barred galaxies harbouring counter-rotating ionized gas, NGC 128, NGC 3203 and NGC 7332. Each system has one or more optically-identified galaxy, at a similar or as yet…

宇宙学与河外天体物理 · 物理学 2015-06-04 Aeree Chung , Martin Bureau , J. H. van Gorkom , Baerbel Koribalski

The counter-rotation phenomenon in disc galaxies directly indicates a complex galaxy assembly history which is crucial for our understanding of galaxy physics. Here we present the complex data analysis for a lenticular galaxy NGC 448, which…

星系天体物理 · 物理学 2016-07-27 Ivan Yu. Katkov , Olga K. Sil'chenko , Igor V. Chilingarian , Roman I. Uklein , Oleg V. Egorov

The early-type spiral NGC 4698 is known to host a nuclear disc of gas and stars which is rotating perpendicularly with respect to the galaxy main disc. In addition, the bulge and main disc are characterised by a remarkable geometrical…

宇宙学与河外天体物理 · 物理学 2015-06-04 E. M. Corsini , J. Méndez-Abreu , N. Pastorello , E. Dalla Bontà , L. Morelli , A. Beifiori , A. Pizzella , F. Bertola

We present our results of the spectroscopic study of the lenticular galaxy NGC 4143 - an outskirt member of the Ursa Major cluster. Using the observations at the 6-m SAO RAS telescope with the SCORPIO-2 spectrograph and also the archive…

星系天体物理 · 物理学 2020-09-30 O. K. Sil'chenko , A. V. Moiseev , D. V. Oparin

A common feature of hierarchical galaxy formation models is the process of "inverse" morphological transformation: a bulge dominated galaxy accretes a gas disk, dramatically reducing the system's bulge-to-disk mass ratio. During their…

天体物理学 · 物理学 2009-11-13 George Hau , Richard Bower , Virginia Kilborn , Duncan Forbes , Michael Balogh , Tom Oosterloo

A gaseous counter-rotating galaxy is a galaxy containing a gas component with opposite angular momentum to the main stellar disk. The counter-rotating gas provides direct evidence for the accretion of external material, a key aspect in…

星系天体物理 · 物理学 2024-10-10 Minje Beom , René A. M. Walterbos , Dmitry Bizyaev

The formation scenario of extended counter-rotating stellar disks in galaxies is still debated. In this paper, we study the S0 galaxy IC 719 known to host two large-scale counter-rotating stellar disks in order to investigate their…

We report the case of the early-type disk galaxy NGC 4672 as a new example of a galaxy characterized by the orthogonal geometrical decoupling between bulge and disk. The morphological features of this galaxy are discussed as well as the…

天体物理学 · 物理学 2007-05-23 M. Sarzi , E. M. Corsini , A. Pizzella , J. C. Vega Beltran , M. Cappellari , J. G. Funes S. J. , F. Bertola

We present the results of integral-field spectroscopic observations of the two disk galaxies NGC 3593 and NGC 4550 obtained with VIMOS/VLT. Both galaxies are known to host 2 counter-rotating stellar disks, with the ionized gas co-rotating…

宇宙学与河外天体物理 · 物理学 2015-06-11 L. Coccato , L. Morelli , A. Pizzella , E. M. Corsini , L. M. Buson , E. Dalla Bonta'

Context. Kinematically decoupled cores (KDCs) are often found in the centers of early-type galaxies. Aims. We aim to investigate the kinematics, structure, and stellar populations of the KDC residing in the early-type galaxy NGC 4494 to…

星系天体物理 · 物理学 2024-11-05 L. Coccato , L. Morelli , A. Pizzella , E. M. Corsini , V. Cuomo

We use an N-body simulation, constructed using GADGET-2, to investigate an accretion flow onto an astrophysical disk that is in the opposite sense to the disk's rotation. In order to separate dynamics intrinsic to the counter-rotating flow…

星系天体物理 · 物理学 2015-10-28 Robert G. Hohlfeld , Richard V. E. Lovelace

NGC 4013 is a nearby Sb edge-on galaxy known for its "prodigious" HI warp and its "giant" tidal stream. Previous work on this unusual object shows that it cannot be fitted satisfactorily by a canonical thin+thick disk structure. We have…

NGC 1232 is a face-on spiral galaxy and a great laboratory for the study of star-formation due to its proximity. We obtained high spatial resolution H{\alpha} images of this galaxy, with adaptive optics, using the SAM instrument at the SOAR…

(abridged)We present the observations of the pair of interacting galaxies NGC6285/86 carried out with the 6m SAO RAS telescope by using 1D and 2D spectroscopy. The observations of NGC6286 with a long-slit spectrograph (UAGS) near the…

天体物理学 · 物理学 2009-11-10 L. V. Shalyapina , A. V. Moiseev , V. A. Yakovleva , V. A. Hagen-Thorn , A. N. Burenkov

Using the integral field unit (IFU) data from Mapping Nearby Galaxies at Apache Point Observatory (MaNGA) survey, we select a sample of 101 galaxies with counter-rotating stellar disks and regularly-rotating ionized gas disk. We classify…

We have identified two new galaxies with gas counter-rotation (NGC1596 and NGC3203) and have confirmed similar behaviour in another one (NGC128), this using results from separate studies of the ionized-gas and stellar kinematics of a…

天体物理学 · 物理学 2009-11-13 M. Bureau , A. Chung

We use new deep 21 cm HI observations of the moderately inclined galaxy NGC 4559 in the HALOGAS survey to investigate the properties of extra-planar gas. We use TiRiFiC to construct simulated data cubes to match the HI observations. We find…

In order to try and understand its origins, we present high-quality long-slit spectral observations of the counter-rotating stellar discs in the strange S0 galaxy NGC 4550. We kinematically decompose the spectra into two counter-rotating…

宇宙学与河外天体物理 · 物理学 2015-06-11 Evelyn J. Johnston , Michael R. Merrifield , Alfonso Aragon-Salamanca , Michele Cappellari

Stellar counter-rotation in disk galaxies directly relates to the complex phenomenon of the disk mass assembly believed to be driven by external processes, such as accretion and mergers. The detailed study of such systems makes it possible…

The interstellar thick disks of galaxies serve as the interface between the thin star-forming disk, where feedback-driven outflows originate, and the distant halo, the repository for accreted gas. We present optical emission line…