16,597 research outputs found
X-ray Intraday Variability of Five TeV Blazars with NuSTAR
We have examined 40 NuSTAR light curves (LCs) of five TeV emitting high
synchrotron peaked blazars: 1ES 0229+200, Mrk 421, Mrk 501, 1ES 1959+650 and
PKS 2155-304. Four of the blazars showed intraday variability in the NuSTAR
energy range of 3-79 keV. Using an auto correlation function analysis we
searched for intraday variability timescales in these LCs and found indications
of several between 2.5 and 32.8 ks in eight LCs of Mrk 421, a timescale around
8.0 ks for one LC of Mrk 501, and timescales of 29.6 ks and 57.4 ks in two LCs
of PKS 2155-304. The other two blazars' LCs do not show any evidence for
intraday variability timescales shorter than the lengths of those observations,
however, the data was both sparser and noisier, for them. We found positive
correlations with zero lag between soft (3-10 keV) and hard (10-79 keV) bands
for most of the LCs, indicating that their emissions originate from the same
electron population. We examined spectral variability using a hardness ratio
analysis and noticed a general "harder-when-brighter" behavior. The 22 LCs of
Mrk 421 observed between July 2012 and April 2013 show that this source was in
a quiescent state for an extended period of time and then underwent an
unprecedented double peaked outburst while monitored on a daily basis during 10
- 16 April 2013. We briefly discuss models capable of explaining these blazar
emissions.Comment: 21 pages, 4 figures, 4 tables, Accepted for Publication in Ap
GRB000301C with peculiar afterglow emission
The CCD magnitudes in Johnson V and Cousins R and I photometric passbands are
determined for GRB 000301C afterglow starting ~ 1.5 day after the gamma-ray
burst. In fact we provide the earliest optical observations for this burst.
Light curves of the afterglow emissions in U, B, V, R, I, J and K' passbands
are obtained by combining the present measurements with the published data.
Flux decay shows a very uncommon variation relative to other well observed
GRBs. Overall, there is a steepening of the optical and near-infrared flux
decay caused by a geometric and sideways expanding jet. This is superimposed by
a short term variability especially during early time (Delta t < 8 days). The
cause of variability is not well understood, though it has occurred
simultaneously with similar amplitude in all the filters. We derive the early
and late time flux decay constants using jet model. The late time flux decay is
the steepest amongst the GRB OTs observed so far with alpha ~ 3. Steepening in
the flux decay seems to have started simultaneously around Delta t ~ 7.6 day in
all passbands. The value of spectral index in the optical-near IR region is ~
-1.0. Redshift determination with z=2.0335 indicates cosmological origin of the
GRB having a luminosity distance of 16.6 Gpc. Thus it becomes the second
farthest amongst the GRBs with known distances. An indirect estimate of the
fluence > 20 keV indicates, if isotropic,> =10^53 ergs of release of energy.
The enormous amount of released energy will be reduced, if the radiation is
beamed which is the case for this event. Using a jet break time of 7.6 days, we
infer a jet opening angle of ~ 0.15 radian. This means the energy released is
reduced by a factor of ~ 90 relative to the isotropic value.Comment: LaTeX file, 11 pages including 4 figures, uses psfig.sty, Bull.
Astron. Society of India(accepted, Sept, 2000 issue
- …