271 research outputs found
Third World ageing crisis
A typical case, culled from the author's own experience in the Third World, points towards a major crisis in ageing in the near future for many developing countries. Whilst the increase in numbers of elderly, both gross and proportionate, is well-known, it is not so widely realised that the increase in developing countries will far outstrip that in industrialized nations. Although the elderly were historically cared for within the traditional extended family structure, that system is now breaking down before the advance of migration and easy divorce. Many elderly persons are left alone in depopulated communities. Others fail to adapt in the rural-to-urban transition. Most developing countries have no firmly established services for the elderly. However, as awareness of the impending crisis increases, community groups assist the elderly in developing their own initiatives to avoid the local effects of the crisis
Angular Momentum Loss by Magnetic Braking and Gravitational Radiation in Relativistic Binary Stars
Angular momentum loss (AML) mechanisms and dynamical evolution owing to
magnetic braking and gravitational radiation in relativistic binary stars (RBS)
are studied with use of physical parameters collected from the literature. We
have calculated and compared AML time scales for the RBS with non-degenerate
components and double degenerate (DD) systems.Comment: 6 pages, 3 figure
Zeeman tomography of magnetic white dwarfs. II, The quadrupole-dominated magnetic field of HE 1045-0908
We report time-resolved optical flux and circular polarization spectroscopy of the magnetic DA white dwarf HE 1045â0908 obtained with FORS1 at the ESO VLT. Considering published results, we estimate a likely rotational period of P rot 2.7 h, but cannot exclude values as high as about 9 h. Our detailed Zeeman tomographic analysis reveals a field structure which is dominated by a quadrupole and contains additional dipole and octupole contributions, and which does not depend strongly on the assumed value of the period. A good fit to the Zeeman flux and polarization spectra is obtained if all field components are centred and inclinations of their magnetic axes with respect to each other are allowed for. The fit can be slightly improved if an oïŹset from the centre of the star is included. The prevailing surface field strength is 16 MG, but values between 10 and ⌠75 MG do occur. We derive an eïŹective photospheric temperature of HE 1045â0908 of T eïŹ = 10 000 ± 1000 K. The tomographic code makes use of an extensive database of pre-computed Zeeman spectra (Paper I)
The Additional Line Component within the Iron K\alpha Profile in MCG-6-30-15: Evidence for Blob Ejection?
The EPIC data of MCG -6-30-15 observed by XMM-Newton were analyzed for the
complexities of the iron K-alpha line. Here we report that the additional line
component (ALC) at 6.9 keV undoubtedly appears within the broad iron Kalpha;
line profile at the high state, whereas it disappears at the low state. These
state-dependent behaviors exclude several possible origins and suggest an
origin of the ALC in matter being ejected from the vicinity of the black hole.
At the low state, the newborn blob ejected from the accretion disk is so
Thomson-thick that hard X-rays are blocked from ionizing the old blobs, leading
to the disappearance of the ALC. When the blob becomes Thomson-thin as a result
of expansion, the hard X-ray will penetrate it and ionize the old ones,
emitting the ALC at the high state. The blob ejection is the key to switching
the ALC on or off.Comment: 6 pages, 4 Figure
Are the jets accelerated from the disk coronas in some active galactic nuclei?
We use a sample of radio-loud active galactic nuclei (AGNs) with estimated
central black hole masses to explore their jet formation mechanisms. The jet
power of AGNs is estimated from their extended radio luminosity. It is found
that the jets in several AGNs of this sample are too powerful to be extracted
from the standard thin accretion disks or rapidly spinning black holes
surrounded by standard thin disks. If the advection dominated accretion flows
(ADAFs) are present in these AGNs, their bright optical continuum luminosity
cannot be produced by pure-ADAFs due to their low accretion rates and low
radiation efficiency, unless the ADAFs transit to standard thin disks at some
radii . If this is the case, we find that the dimensionless
accretion rates as high as 0.05 and transition from ADAFs to standard thin
disks at rather small radii around 20GM/c^2 are required to explain their
bright optical continuum emission. We propose that the disk-corona structure is
present at least in some AGNs in this sample. The plasmas in the corona are
very hot, and the pressure scale-height of the corona H\sim R. Powerful jets
with Q_jet \sim L_bol (bolometric luminosity) can form by the large-scale
magnetic fields created by dynamo processes in the disk corona of some AGNs.
The maximal jet power extractable from the corona Q_jet^max\le 0.6L_c (L_c is
the corona luminosity) is expected by this jet formation scenario. The
statistic results on the sample of AGNs are consistent with the predictions of
this scenario. Finally, the possibility that the jet is driven from a
super-Keplerian rotating hot layer located between the corona and the cold disk
is discussed. We find that, in principle, this layer can also produce a
powerful jet with Q_jet\sim L_bol.Comment: 9 pages, accepted for publication in Ap
Envelope Ejection: an Alternative Process for some Early Case B Binaries
We discuss the evolution of binaries with moderately high masses (about 10 -
30 solar masses), and with periods of about 3 - 300d, corresponding mostly to
early Case B. These are usually thought to evolve either by reasonably
conservative Roche-lobe overflow, if the initial mass ratio is fairly mild, or
else by highly non-conservative common-envelope evolution, with spiral-in to
short periods (hours, typically), if the initial mass ratio is rather extreme.
We discuss here a handful of binaries from part of this period range (about 50
- 250d), which appear to have followed a different path: we argue that they
must have lost a large proportion of initial mass (about 70 - 80%), but without
shortening their periods at all. We suggest that their behaviour may be due to
the fact that stars of such masses, when evolved also to rather large radii,
are not far from the Humphreys-Davidson limit where single stars lose their
envelopes spontaneously in P Cygni winds, and so have envelopes which are only
lightly bound to the core. These envelopes therefore may be relatively easily
dissipated by the perturbing effect of a companion. In addition, some or all of
the stars considered here may have been close to the Cepheid instability strip
when they filled their Roche lobes. One or other, or both, of high luminosity
and Cepheid instability, in combination with an appropriately close binary
companion, may be implicated
A New Evolutionary Path to Type Ia Supernovae: Helium-Rich Super-Soft X-Ray Source Channel
We have found a new evolutionary path to Type Ia supernovae (SNe Ia) which
has been overlooked in previous work. In this scenario, a carbon-oxygen white
dwarf (C+O WD) is originated, not from an asymptotic giant branch star with a
C+O core, but from a red-giant star with a helium core of . The helium star, which is formed after the first common envelope
evolution, evolves to form a C+O WD of with transferring
a part of the helium envelope onto the secondary main-sequence star. This new
evolutionary path, together with the optically thick wind from mass-accreting
white dwarf, provides a much wider channel to SNe Ia than previous scenarios. A
part of the progenitor systems are identified as the luminous supersoft X-ray
sources or the recurrent novae like U Sco, which are characterized by the
accretion of helium-rich matter. The white dwarf accretes hydrogen-rich,
helium-enhanced matter from a lobe-filling, slightly evolved companion at a
critical rate and blows excess matter in the wind. The white dwarf grows in
mass to the Chandrasekhar mass limit and explodes as an SN Ia. A theoretical
estimate indicates that this channel contributes a considerable part of the
inferred rate of SNe Ia in our Galaxy, i.e., the rate is about ten times larger
than the previous theoretical estimates for white dwarfs with slightly evolved
companions.Comment: 19 pages including 12 figures, to be published in ApJ, 519, No.
The Binarity of Eta Carinae and its Similarity to Related Astrophysical Objects
I examine some aspects of the interaction between the massive star Eta
Carinae and its companion, in particular during the eclipse-like event, known
as the spectroscopic event or the shell event. The spectroscopic event is
thought to occur when near periastron passages the stellar companion induces
much higher mass loss rate from the primary star, and/or enters into a much
denser environment around the primary star. I find that enhanced mass loss rate
during periastron passages, if it occurs, might explain the high eccentricity
of the system. However, there is not yet a good model to explain the presumed
enhanced mass loss rate during periastron passages. In the region where the
winds from the two stars collide, a dense slow flow is formed, such that large
dust grains may be formed. Unlike the case during the 19th century Great
Eruption, the companion does not accrete mass during most of its orbital
motion. However, near periastron passages short accretion episodes may occur,
which may lead to pulsed ejection of two jets by the companion. The companion
may ionize a non-negligible region in its surrounding, resembling the situation
in symbiotic systems. I discuss the relation of some of these processes to
other astrophysical objects, by that incorporating Eta Car to a large class of
astrophysical bipolar nebulae.Comment: Updated version. ApJ, in pres
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