3,985 research outputs found
CO lines in high redshift galaxies: perspective for future mm instruments
Nearly 10 high redshift (z>2) starburst galaxies have recently been detected
in the CO lines, revealing the early presence in the universe of objects with
large amounts of already-enriched molecular gas. The latter has sufficient
density to be excited in the high-level rotational CO lines, which yield more
flux, making easier high-redshift detections; however the effect is not as
strong as for the sub-millimeter and far-infrared dust continuum emission. With
the help of simple galaxy models, based on these first detections, we estimate
the flux in all CO lines expected for such starbursting objects at various
redshifts. We discuss the detection perspectives with the future millimeter
instruments.Comment: 11 pages, 11 figures, accepted in A &
Cold gas in the inner regions of intermediate redshift clusters
Determining gas content and star formation rate has known remarkable progress
in field galaxies, but has been much less investigated in galaxies inside
clusters. We present the first CO observations of luminous infrared galaxies
(LIRGs) inside the virial radii of two intermediate redshift clusters,
CL1416+4446 (z=0.397) and CL0926+1242 (z=0.489). We detect three galaxies at
high significance (5 to 10 sigma), and provide robust estimates of their CO
luminosities, L'CO. In order to put our results into a general context, we
revisit the relation between cold and hot gas and stellar mass in nearby field
and cluster galaxies. We find evidence that at fixed LIR (or fixed stellar
mass), the frequency of high L'CO galaxies is lower in clusters than in the
field, suggesting environmental depletion of the reservoir of cold gas. The
level of star formation activity in a galaxy is primarily linked to the amount
of cold gas, rather than to the galaxy mass or the lookback time. In clusters,
just as in the field, the conversion between gas and stars seems universal. The
relation between LIR and L'CO for distant cluster galaxies extends the relation
of nearby galaxies to higher IR luminosities. Nevertheless, the intermediate
redshift galaxies fall well within the dispersion of the trend defined by local
systems. Considering that L'CO is generally derived from the CO(1-0) line and
sensitive to the vast majority of the molecular gas in the cold interstellar
medium of galaxies, but less to the part which will actually be used to form
stars, we suggest that molecular gas can be stripped before the star formation
rate is affected. Combining the sample of Geach et al. (2009, 2011) and ours,
we find evidence for a decrease in CO towards the cluster centers. This is the
first hint of an environmental impact on cold gas at intermediate redshift.Comment: Accepted for publication in Astronomy and Astrophysic
On Eigenvalue spacings for the 1-D Anderson model with singular site distribution
We study eigenvalue spacings and local eigenvalue statistics for 1D lattice
Schrodinger operators with Holder regular potential, obtaining a version of
Minami's inequality and Poisson statistics for the local eigenvalue spacings.
The main additional new input are regular properties of the Furstenberg
measures and the density of states obtained in some of the author's earlier
work.Comment: 13 page
Rapid Measurement of Quantum Systems using Feedback Control
We introduce a feedback control algorithm that increases the speed at which a
measurement extracts information about a -dimensional system by a factor
that scales as . Generalizing this algorithm, we apply it to a register of
qubits and show an improvement O(n). We derive analytical bounds on the
benefit provided by the feedback and perform simulations that confirm that this
speedup is achieved.Comment: 4 pages, 4 figures. V2: Minor correction
MOND and Cosmology
I review various ideas on MOND cosmology and structure formation beginning
with non-relativistic models in analogy with Newtonian cosmology. I discuss
relativistic MOND cosmology in the context of Bekenstein's theory and propose
an alternative biscalar effective theory of MOND in which the acceleration
parameter is identified with the cosmic time derivative of a matter coupling
scalar field. Cosmic CDM appears in this theory as scalar field oscillations of
the auxiliary "coupling strength" field.Comment: 8 pages, LaTeX, 2 figures, to appear in proceedings of IAP05 in
Paris: Mass Profiles and Shapes of Cosmological Structures, G. Mamon, F.
Combes, C. Deffayet and B. Fort (eds), (EDP-Sciences 2005
Gravitational torques in spiral galaxies: gas accretion as a driving mechanism of galactic evolution
The distribution of gravitational torques and bar strengths in the local
Universe is derived from a detailed study of 163 galaxies observed in the
near-infrared. The results are compared with numerical models for spiral galaxy
evolution. It is found that the observed distribution of torques can be
accounted for only with external accretion of gas onto spiral disks. Accretion
is responsible for bar renewal - after the dissolution of primordial bars - as
well as the maintenance of spiral structures. Models of isolated, non-accreting
galaxies are ruled out. Moderate accretion rates do not explain the
observational results: it is shown that galactic disks should double their mass
in less than the Hubble time. The best fit is obtained if spiral galaxies are
open systems, still forming today by continuous gas accretion, doubling their
mass every 10 billion years.Comment: 4 pages, 2 figures, Astronomy and Astrophysics Letters (accepted
The complex molecular absorption line system at z=0.886 towards PKS1830-211
New millimeter wave observations of the molecular absorption line system in
the gravitational lens to PKS1830-211 at z=0.88582 is presented.
Self-calibrated interferometer data shows unequivocally that the previously
detected absorption component is associated with the gravitationally lensed
south-west image of the background source. A second absorption line of
HCO+(2-1) at z=0.88582 is detected. This component is shifted in velocity by
-147 km/s relative to the main absorption line, and is shown to be associated
with the north-east image. These two absorption lines are used to constrain the
mass of the lensing galaxy. Upper limits to absorption and emission lines from
the possible absorption system at z=0.1927, seen in 21cm HI by Lovell et al,
are reported.Comment: 16 pages, 7 figures, Accepted for publication in Ap
On the global structure of distant galactic disks
Radial and vertical profiles are determined for a sample of 34 edge-on disk
galaxies in the HDFs, selected for their apparent diameter larger than 1.3
arcsec and their unperturbed morphology. The thickness and flatness of their
galactic disks are determined and discussed with regard to evolution with
redshift. We find that sub-L* spiral galaxies with z \sim 1 have a relative
thickness or flatness (characterized by h_z/h the scaleheight to scalelength
ratio) globally similar to those in the local Universe. A slight trend is
however apparent, with the h_z/h flatness ratio larger by a factor of \sim 1.5
in distant galaxies if compared to local samples. In absolute value, the disks
are smaller than in present-day galaxies. About half of the z \sim 1 spiral
disks show a non-exponential surface brightness distribution.Comment: 13 pages, 8 figures, accepted in A and
On compressive radial tidal forces
Radial tidal forces can be compressive instead of disruptive, a possibility
that is frequently overlooked in high level physics courses. For example,
radial tidal compression can emerge in extended stellar systems containing a
smaller stellar cluster. For particular conditions the tidal field produced by
this extended mass distribution can exert on the cluster it contains
compressive effects instead of the common disruptive forces. This interesting
aspect of gravity can be derived from standard relations given in many
textbooks and introductory courses in astronomy and can serve as an opportunity
to look closer at some aspects of gravitational physics, stellar dynamics, and
differential geometry. The existence of compressive tides at the center of huge
stellar systems might suggest new evolutionary scenarios for the formation of
stars and primordial galactic formation processes.Comment: 22 pages, 2 figure
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