GRB 010222
GCN Circular 1087
Subject
GRB 010222: HST observations -- host galaxy and late-time decay
Date
2001-08-14T18:45:00Z (25 years ago)
From
Andrew S. Fruchter at STScI <fruchter@stsci.edu>
A. Fruchter, I. Burud, J. Rhoads and A. Levan (STScI) report:
We have reduced the now public archival HST images of GRB 010222, taken
on 28 February, 17 and 18 March, 5 and 6 April, and 4 and 5 May of
this year using the F606W (V/R) and F814W (I) filters on WFPC2. Using
the most recent data, we find that OT of GRB 010222 is clearly superposed
on a host galaxy.
In order to accurately determine the decay of the OT and the magnitude
of the host, we have drizzled the images onto an output grid that
allows interlacing of these 2-point dithered images. We have then fit
for the decay of the OT and the host galaxy flux using a small (~0."2)
aperture, which provides the best estimate of the OT as a function of
time, as well as using a larger aperture (~0."5), which is more
appropriate for determining the host galaxy magnitude.
We find that the late-time decay of the OT is significantly steeper
than previously reported. We find a power-law decay between 28 February
(day 6) and 5 May (day 71) of -1.7 +/- 0.05. Formally, we find
a slightly steeper decay (-1.73 +/- 0.02) in F606W than in F814W
(-1.64 +/- 0.04), but this discrepancy may indicate the level of
systematic error in the slope measurement rather than true color
evolution of the OT.
We find that the host galaxy is dominated by a compact core (FWHM ~ 0."15)
located directly under the OT. The magnitude of the host is
F606W(AB) = 26.0 +/- 0.1, F814W(AB) = 25.8 +/- 0.15.
Images of the host, as well as a plot of the coninuing decline of the OT,
are available at
http://www.stsci.edu/~fruchter/GRB/010222
GCN Circular 1082
Subject
GRB 010222 - WHT BVRI images
Date
2001-07-11T09:02:10Z (25 years ago)
From
Isabel Salamanca at U. of Amsterdam <isabel@science.uva.nl>
Isabel Salamanca, Paul Vreeswijk, Evert Rol, Lex Kaper (Anton
Pannekoek Institute, University of Amsterdam), Nial Tanvir (University
of Hertfordshire), Andy Fruchter (STScI), Ralph Wijers (SUNY, Stony
Brook), Chryssa Kouveliotou (NASA/MSFC), Thomas Augusteijn and
Almudena Zurita (La Palma) report:
On May 22, 2001, we have obtained B,V,R,I images of the field of GRB
010222
(Piro et al. GCN 959) with the Prime Focus Camera
at the 4.2-m William Herschel Telescope (La Palma, Spain). The aim of
these observations was to detect the host galaxy. The observations
were done in photometric conditions, with seeing 1.1 arcsec.
The details of the observation are as follows:
Filter Exposure Star 'A' Limiting mag
(sec) (Stanek, GCN 970) (3 sigma,
aperture=1xFWHM)
-----------------------------------------------------
B 900 18.38 25.4
V 675 17.62 25.8
R 675 17.13 24.4
I 675 16.76 24.3
Photometry was done by using 7 standard stars in the field SA110 of
the Landolt Catalog (AJ, 1992, vol 104, pag 340). The resulting
magnitudes of star 'A' are in excellent agreement (between
0.01 and 0.04 mag) with the values reported by Henden et al. (GCN
987).
No host galaxy (or any other object) is detected at the position of
the optical afterglow of GRB010222
(RA = 14:52:12.55, DEC =+43:01:06.2, J2000).
Very close to the position of the GRB010222, we detect two objects,
most probably galaxies. The very faint galaxies reported by Garnavich
et al (GCN 1009) are not visible in our images, although there is a
hint of one of them.
The photometry and positions of these two galaxies are as follows:
Galaxy 1 RA = 14:52:12.4, DEC = +43:00:58.7, J2000
1.6 arcsec W, 7.6 arcsec S
----------------------------------------------------
B = 23.51 +/- 0.10
V = 23.16 +/- 0.11
R = 22.47 +/- 0.08
I = 20.77 +/- 0.12
Galaxy 2: RA = 14:52:12.7, DEC = +43:01:09.9, J2000
1.6 arcsec E, 3.6 arcsec N
------------------------------------------------------
B = 24.45 +/- 0.24
V = 23.79 +/- 0.18
R = 23.05 +/- 0.15
I > 24.3 (affected by fringing)
The error in the coordinates is about 0.24 arcsec. The error in the
magnitudes is the formal error obtained with the task 'phot' of Iraf.
A figure can be seen at http://zon.wins.uva.nl/~evert/grb010222/
This message can be cited.
GCN Circular 1051
Subject
GRB 010222 /corrections to VBT data
Date
2001-04-27T09:23:31Z (25 years ago)
From
SG Bhargavi at Indian Inst of Astrophysics <bhargavi@iiap.ernet.in>
R Cowsik and SG Bhargavi (IIA Bangalore, India) report:
Results of observations of afterglow of GRB 010222
obtained from 2.34-m VBT are as follows:
Feb 24.977 600s I 20.8 +- 0.2 **
Feb 24.9924 600s R 21.405 +/- 0.17
Feb 25.9816 900s I 21.42 +/-0.18
Feb 25.9955 900s R 21.99 +/-0.13
Feb 28.9014 1200s R >22.1
Feb 28.9257 2400s R >22.1
Mar 1.9319 1800s R >21.9
** It may be noted that some of these are the final numbers and
those quoted in Table.1 in astroph/0104363 (Cowsik et al.)
were priliminary.
Further details on measurements on these data may be obtained from Bhargavi
(2001; Ph D thesis).
We acknowledge S Ambika and K Jayakumar for observations.
This messge may be cited.
GCN Circular 1023
Subject
GRB010222, CXO X-ray observations
Date
2001-03-26T20:19:23Z (26 years ago)
From
Fiona Harrison at CalTech <fiona@srl.caltech.edu>
F. A. Harrison, S. A. Yost, S. R. Kulkarni report on behalf of a
larger collaboration:
We observed the field containing GRB010222 with Chandra ACIS for
17 ksec, beginning on March 3.44 UT. We detect an X-ray source
within 1" of the position of the optical transient (GCN 961, 962)
14:52:12.55 43:01:06.26 (J2000) and consistent with the X-ray
transient detected by the BeppoSAX NFI (GCN 966). Preliminary
analysis shows a 2-10 keV X-ray flux of 7.2e-14 erg/cm2/s for
this source.
This message may be cited.
GCN Circular 1009
Subject
GRB010222, late-time optical observation
Date
2001-03-20T20:15:03Z (26 years ago)
From
Peter Garnavich at Center for Astrophysics <peterg@mars.harvard.edu>
P. Garnavich, J. Quinn (Notre Dame) and K. Z. Stanek (CfA)
The field of GRB 010222 was imaged with the 1.8m Vatican Advanced
Technology Telescope (VATT) on 2001 March 18 and 19 (UT). The
total exposure time in R band was 3 hours in average seeing of 1.2".
A faint source is detected within 0.2" of the position of the optical
afterglow (GCN 961, 962). Using PSF fitting photometry we
find R=24.53+/-0.25 mag assuming the Henden calibration
of the nearby stars (GCN 987). The estimated magnitude is consistent
with the extrapolated light curve assuming a power-law with
index -1.33 (after the break at 0.7 days).
A number of galaxies are visible within 10" of the afterglow. The
brightest is a compact galaxy with R=22 mag, 4.2" (PA=10 deg) from the
GRB. Three faint galaxies, all 4" from the afterglow have PA=280, 230,
and 200 deg with respect to the afterglow.
The VATT image is available at
"http://cfa-www.harvard.edu/cfa/oir/Research/GRB/".
GCN Circular 1007
Subject
GRB 010222 - HEGRA GeV/TeV Observations
Date
2001-03-09T12:59:27Z (26 years ago)
From
Spanish HEGRA group at XXXX <grb@pe1rq.hegra.iac.es>
GeV/TeV Observations of GRB 010222
N. Goetting (1) and D. Horns (2) on behalf of the HEGRA Collaboration report:
(1) University of Hamburg (Germany)
(2) Max-Planck-Institut f. Kernphysik, Heidelberg (Germany)
On February 23rd beginning at UT 02:37 the BeppoSAX position of GRB 010222
(GCN 960) was observed by the stereoscopic HEGRA Cherenkov telescope system
on La Palma (approx. 19 hours after the outburst). The object was observed
for 4 hours at altitudes > 45 degrees under good weather conditions.
The source was not detected above a threshold photon energy of 760 GeV.
A preliminary data analysis gives an upper limit on the photon flux at
the 90% confidence level:
J(E > 760 GeV) < 9.4 * 10^(-12) erg cm^(-2) s^(-1)
Contemporaneous observations of the Crab nebula were used to derive
this upper limit.
GCN Circular 1005
Subject
GRB010222: Chandra X-ray Observatory Observation
Date
2001-03-04T18:19:25Z (26 years ago)
From
Gordon Garmire at Penn State U <garmire@astro.psu.edu>
GRB 010222: Chandra Observation of the afterglow
G. P. Garmire, A. B. Garmire (Penn State), L. Piro(IAS/CNR Frascati),
E. Schlegel(Harvard-Smithsonian CfA)
A Chandra observation of GRB010222 (GCN 959, 960) with ACIS-S
started on Feb. 22 22:28 UT, i.e. 15 hours after the burst,
and lasted for 30 ksec.
The X-ray afterglow of the burst was detected at a position
RA(2000)= 14h52m12.51s, Decl(2000)=+43 01'06.2" (with an error of 1"),
consistent with the position of the OT (GCN963).
The source was very bright, and a more detailed analysis is under way
to take into account pile-up effects.
Gordon Garmire
ACIS IPI
[GCN OPS NOTE(04Mar01): This message was received on 01Mar01 21:00 UT,
but was delayed due it not being sent directly to the Circular processing
demon and because the GCN operator was on travel until 04 Mar.]
GCN Circular 1004
Subject
GRB010222: Sub-millimeter vanishing act
Date
2001-03-03T05:32:43Z (26 years ago)
From
Ian Smith at Rice U <ian@spacsun.rice.edu>
R.J. Ivison, C.E. Jenner (University College London), W.E. Lundin,
R.P.J. Tilanus (JAC), and I.A. Smith (Rice University) report:
Further observations of GRB 010222 made using the SCUBA sub-millimeter
continuum bolometer array on the James Clerk Maxwell Telescope now fail
to significantly detect the counterpart described in GCN #971 and #996.
The observations, made between 14:54 and 18:05 on 2001 March 2 UT, give
a preliminary 850 micron flux density of 0.7 +/- 1.1 mJy. A 1-hour
observation on the previous night is consistent with this result.
It thus appears as if the source detected earlier is not the quiescent
host galaxy. Indeed, of the 17 bursts studied with SCUBA to date, that
have measured redshifts between 0.707 and 3.4, no conclusive detections
of quiescent sub-millimeter hosts have so far been found (Smith et al.
1999, A&A, 347, 92; Smith et al. 2001, A&A, in press).
At least at 850 microns, GRB 010222 may be similar to GRB 980329,
which also had an apparent excess in the SCUBA observations and whose
sub-millimeter flux decayed rapidly with time (unfortunately, the first
SCUBA observations were not made until 7 days after that burst).
A final SCUBA observation of GRB 010222 is planned during the coming week.
GCN Circular 1003
Subject
GRB010222 - Optical observation
Date
2001-03-03T00:39:04Z (26 years ago)
From
Christian Veillet at CFHT <veillet@cfht.hawaii.edu>
The optical counterpart of GRB010222 has been observed using the
CFHT Multi Object Spectrograph in imaging mode at the Cassegrain
focus of the 3.6-m CFH Telescope on the night of March 1 to 2.
Two 10 mn images were obtained with a seeing of about 0.8".
Photometric reduction made as outlined on GCN #1000 leads to:
Mar. 2.641 R = 23.10 +/- 0.10
The index of the power law decay fitting the R light curve data
since 0.6 days after the burst (including the revised and new
measurements by Holland et al. in GCN #1002) is 1.25 +/- 0.03,
the same as our previous determination (Veillet, GCN #1000) and
not significantly different from the GCN #1002 value.
While a few objects are now seen in a radius of 4", the OT is
still a point like object.
More information (with the new images of the OT) can be found at
http://www.cfht.hawaii.edu/~veillet/grb.html
M. Pakull, L. Mirioni, and J. McDonald are acknowledged for their
help in this observation.
This message may be cited.
--
************************************************************
Dr. Christian Veillet, CFHT Senior Resident Astronomer
Phone: (808) 885-3161 http://www.cfht.hawaii.edu/~veillet/
************************************************************
GCN Circular 1002
Subject
GRB 010222, Optical Observations
Date
2001-03-02T21:19:06Z (26 years ago)
From
Stephen Holland at U. of Notre Dame <sholland@nd.edu>
An Early Break in the Optical Light Curve of GRB 010222
Stephen Holland (Notre Dame)
Johan Fynbo (ESO)
Javier Gorosabel (DSRI)
Arne Henden (USNO)
Jens Hjorth (Copenhagen)
Brian Jensen (Copenhagen)
Holger Pedersen (Copenhagen)
We have obtained deep Cousins R-band images of the optical
afterglow associated with GRB 010222 using the 2.5m Nordic Optical
Telescope (NOT) at La Palma and the USNO 1.0m telescope at Flagstaff
Station. Preliminary magnitudes, using Rc = 17.175 for Stanek's
(2001a, GCN 970) Star "A", as calibrated by Henden (2001, GCN 987),
are:
UT(middle) Rc err Telescope
-----------------------------------------------
2001:02:23.0102 19.733 0.014 NOT
2001:02:23.0171 19.707 0.013 NOT
2001:02:23.0216 19.739 0.012 NOT
2001:02:23.0844 19.829 0.011 NOT
2001:02:23.0889 19.852 0.010 NOT
2001:02:23.1463 19.933 0.009 NOT
2001:02:23.1661 19.960 0.014 NOT
2001:02:23.2116 20.031 0.009 NOT
2001:02:23.2858 20.126 0.018 NOT
2001:02:24.0701 20.950 0.024 NOT
2001:02:24.1313 20.975 0.024 NOT
2001:02:24.1358 21.012 0.025 NOT
2001:02:24.1410 21.052 0.025 NOT
2001:02:24.1579 21.006 0.023 NOT
2001:02:24.1750 21.043 0.025 NOT
2001:02:24.1863 21.000 0.023 NOT
2001:02:24.2469 21.035 0.022 NOT
2001:02:25.0534 21.536 0.057 NOT
2001:02:25.0579 21.426 0.058 NOT
2001:02:25.2535 21.638 0.044 NOT
2001:02:25.2583 21.667 0.041 NOT
2001:02:22.4874 18.39 0.05 USNO
2001:02:22.5241 18.51 0.05 USNO
2001:02:22.5236 18.67 0.06 USNO
2001:02:22.5385 18.66 0.06 USNO
2001:02:24.4632 21.23 0.06 USNO
-----------------------------------------------
In order to maintain as much uniformity as possible in the
photometry we first restrict ourselves to data taken with the NOT.
This data extends from 0.70 to 2.95 days after the burst and is
consistent with a single power law with a slope of -1.24 +/- 0.02 (Q <
99.954%).
We supplemented this data with R-band photometry of GRB 010222
from Stanek et al. (2001a, GCN 970), Price et al. (2001, GCN 973),
Orosz (2001, GCN 976), Stanek et al. (2001b, GCN 983), Masetti et
al. (2001, GCN 985), Oksanen et al. (2001, GCN 990), Stanek & Falco
(2001, GCN 991), Velentini et al. (2001, GCN 992), Watanabe et
al. (2001, GCN 993), and Veillet (2001, GCN 1000). All the photometry
was adjusted to the photometric zero points of Henden (2001a, GCN
987), except for that of Veillet (2001, GCN 1000), which was used "as
is". The photometry was corrected for Galactic extinction assuming a
reddening of E(B-V) = 0.023 and an R-band extinction of A_R = 0.061.
The complete data set is not consistent with a single power law
(Q < 0.001%). Photometry earlier than 0.33 days after the burst is
weakly consistent with a single power law with a slope of -0.71 +/-
0.13 (Q = 77.969%), and the photometry later than 0.57 days after the
burst is consistent with a single power law with a slope of -1.24 +/-
0.02 (Q = 99.990%). Fitting a broken power law (see Holland et al.,
2000, A&A, 364, 467 for the method) to the light curve yields a break
at 0.48 +/- 0.11 days (11.5 +/- 2.6 hours) after the burst, and slopes
of -0.72 +/- 0.13 before the break and -1.24 +/- 0.02 after the break
(Q = 99.991%). The smooth function of Beuermann et al. (1999, A&A,
352, L26) with slopes of -0.67 +/- 0.34 before the break, -1.29 +/-
0.06 after the break, and an exponent of 1.8 +/- 4.4 provides a
slightly better fit (Q = 99.998%) to the data than the broken power
law does. Our fits suggest that the break occurred rapidly between
0.33 and 0.57 days (8 and 14 hours) after the burst. A plot of the
light curve and the two fits, along with a deep composite image of the
field containing the GRB, is available at
"http://www.nd.edu/~sholland/grb/grb010222/index.html".
This message may be cited.
GCN Circular 1000
Subject
GRB010222 - Optical observation
Date
2001-03-02T02:16:03Z (26 years ago)
From
Christian Veillet at CFHT <veillet@cfht.hawaii.edu>
The optical counterpart of GRB010222 has been observed using the
CFHT Multi Object Spectrograph in imaging mode at the Cassegrain
focus of the 3.6-m CFH Telescope on the night of Feb. 28 to March 1.
Two 10 mn images were obtained in much better conditions than
the night before (GCN #998) with a seeing of about 0.8". There are
only a few point like sources in the vicinity of the OT. A star like
object ~11" S of the OT has been carefully measured with respect
to the two stars used in GCN #998 and has a very consistent R
magnitude on the MOS exposures (R = 20.13 +/- 0.02). A fainter
object 8" from the OT is used for internal consistency checks at
R = 22.35.
Precise reduction of the images from Feb. 28 and March 1 gives the
following results:
Feb. 28.653 UTC R = 22.73 +/- 0.10
Mar. 01.628 UTC R = 22.96 +/- 0.10
The index of the power law decay given in GCN #998 is not
significantly modified and found as 1.25 +/- 0.06.
There is not structure found on the OT, which is still seen as a
point source on the March 1 combined image.
More information (with the new images of the OT) can be found at
http://www.cfht.hawaii.edu/~veillet/grb.html
M. Pakull, L. Mirioni, and J. McDonald are acknowledged for their
help in this observation.
This message may be cited.
--
************************************************************
Dr. Christian Veillet, CFHT Senior Resident Astronomer
Phone: (808) 885-3161 http://www.cfht.hawaii.edu/~veillet/
************************************************************
GCN Circular 999
Subject
GRB 010222: High-Resolution Keck Spectroscopy
Date
2001-03-01T18:08:06Z (26 years ago)
From
George Djorgovski at Caltech/Palomar <george@oracle.caltech.edu>
GRB 010222: High-Resolution Keck Spectroscopy
S. Castro, S. G. Djorgovski, S. R. Kulkarni, J. S. Bloom, T. J. Galama,
D. E. Reichart, P. A. Price (Caltech), H. Ebeling (IfA Hawaii), and D. A.
Frail (NRAO), report on behalf of the Caltech-NRAO-CARA GRB collaboration:
Spectra of the optical transient associated with GRB 010222 (GCN # 959, 961)
have been obtained on 23.61 February UT by H. Ebeling, using the Echelle
Spectrograph and Imager (ESI) on the Keck-II 10-m telescope. Preliminary
analysis shows the following:
We confirm the existence of 3 absorption systems reported earlier (GCN # 965,
974, 989), with improved heliocentric redshifts as follows:
(1) z_abs = 1.4768 +- 0.0002 (based on 22 metallic lines)
This system, presumably associated with the host galaxy, appears to
have some kinematic substructure, possibly with two distinct systems at
z_1 = 1.47667 +- 0.00005 and z_2 = 1.47755 +- 0.00005, i.e., with a
restframe velocity separation of 106 km/s, typical for internal motions
in galaxies. The equivalent widths of the lines are unusually strong
in comparison to metallic line absorbers seen in the spectra of quasars,
indicating a high column density of gas, probably consistent with a
star-forming region environment.
(2) z_abs = 1.1561 +- 0.0001 (based on 9 metallic lines)
(3) z_abs = 0.9274 +- 0.0001 (based on 5 metallic lines)
Systems (2) and (3) are typical for the metallic line absorbers at
comparable redshifts. Detection of two such foreground systems is not
unusual. Further analysis of the data is in progress.
This note can be cited.
GCN Circular 998
Subject
GRB010222: Optical observation and decay
Date
2001-03-01T09:21:10Z (26 years ago)
From
Christian Veillet at CFHT <veillet@cfht.hawaii.edu>
The optical counterpart of GRB010222 has been observed using the
CFHT Multi Object Spectrograph in imaging mode at the Cassegrain
focus of the 3.6-m CFH Telescope on the night of Feb. 27 to 28.
One image was obtained in relatively poor conditions (seeing ~ 1.5").
A preliminary reduction using stars (223.008250,43.006507) and
(223.098277,42.994077) from Henden's list (GCN #987) gives:
Feb. 28.653 UTC R = 22.60 +/- 0.15
The relative photometry of the two stars used is consistent
with our image within 0.02 magnitudes. Using all the measurements
of the R magnitude of the OT published in the GCN's (corrected if
needed to put them back in the photometric system of Henden's list),
the R magnitude is following a nice power law decay with an index of
1.20 +/- 0.07 since 0.6 days after the burst.
An image of the OT and a graph of the decay are available at
http://www.cfht.hawaii.edu/~veillet/grb.html
S. Lilly and J. McDonald are acknowledged for their help in
this observation.
This message may be cited.
--
************************************************************
Dr. Christian Veillet, CFHT Senior Resident Astronomer
Phone: (808) 885-3161 http://www.cfht.hawaii.edu/~veillet/
************************************************************
GCN Circular 996
Subject
Sub-millimeter Excess/GRB 010222
Date
2001-02-27T13:28:18Z (26 years ago)
From
Shri Kulkarni at Caltech <srk@astro.caltech.edu>
S. R. Kulkarni (Caltech), D. A. Frail (NRAO), G. Moriarty-Schieven
(JAC), F. Bertoldi (MPIfR), F. Walter (OVRO), D. Shepherd (NRAO), R.
Sari (Caltech), D. E. Reichart (Caltech) and S. G. Djorgovski (Caltech)
report:
Observations of the afterglow of GRB 010222 have continued with the
SCUBA sub-millimeter continuum bolometer array on the James Clark
Millimetre Telescope (JCMT). The first observation, reported in GCN#971
by Fich et al. was begun 5.6 hrs after the burst on Feb 22 at 13:03 UT.
Two additional observations were made beginning on Feb 23.46 UT and
Feb. 24.68 UT, or 27.7 hrs and 56.8 hrs after the burst. The source
had a 350 GHz flux density of 4.2+/-1.2 mJy, 3.6+/-0.9 mJy and
4.2+/-1.3 mJy on these three days, respectively.
In contrast to the bright sub-millimeter emission, the source is weak
or undetectable at millimeter wavelengths. F. Bertoldi has conducted
observations with the Max-Planck Millimeter Bolometer (MAMBO) array
(220 GHz) on the IRAM 30-m telescope on the nights of February 23 and
the 24. The data reduction is in progress. However, the preliminary
results are 1.4+/-0.5 mJy and 1.2+/-0.3 mJy, respectively. F. Walter
and D. Shepherd have conducted observations at the OVRO Interferometer
(98 GHz). The observations of Feb 23.81 yield an upper limit of -0.3
+/-0.8 mJy. [At the time of the submission we recieved GCN 995
which reports similar upper limits from PdBI but for the epoch
Feb 24.94-25.11 UT].
The relative constancy of the 350 GHz flux density and the steep
spectrum between 220 GHz and 350 GHz (spectral slope>+2.4) cannot be
reconciled with standard afterglow models. Free-free or synchrotron
self-absorption in the millimeter band is unlikely because the source
is detectable at centimeter wavelengths (GCN#968). Thus we conclude
that the sub-millimeter flux originates as a distinct emission
component, separate from the main afterglow emission (which dominates
the centimeter fluxes).
The simplest hypothesis is that the the sub-millimeter flux arises from
the host galaxy. Indeed, the sub-millimeter flux of the host (assumed
to be at redshift of 1.467; GCN 965, GCN 989) is typical of
star-forming galaxies selected in SCUBA surveys. The star formation
rate estimated in the usual manner (Carilli & Yun, ApJ, L13, 1999) is
500 Msun/yr -- typical of the sample of dusty, high redshift starburst
galaxies (Smail et al. 2000; astro-ph/000823). This inference is
entirely consistent with models in which GRBs are related to massive
stars.
There is considerable diversity in the morphology and star-formation
rates of star-forming galaxies and this also appears to be the case for
GRB selected host galaxies. If the relation between GRBs and
starformation holds strictly then GRBs, thanks to the immense dust
penetrating power of gamma-rays, could be used to select a sample
of star-formation galaxies with no bias towards dust. The additional
advantage of this sample is that the afterglow offers the opportunity
to measure the redshift of the host galaxy (as is the case here).
There are other possible explanations for the sub-millimetric excess
such as reprocessing of the burst (flash) by the ambient dust or a very
strong reverse shock. We are investigating these possibilities but they
appear to be less likely or contrived.
In the host hypothesis, we expect the sub-millimeter emission to be
constant and we also expect a contribution (about 100 microJy) at 1.4
GHz (from synchrotron emission). Continued observations at radio
wavelengths are urgently required both to test the constancy of the
sub-millimeter flux and also to monitor the afterglow emission.
GCN Circular 995
Subject
GRB 010222
Date
2001-02-27T12:56:58Z (26 years ago)
From
Michael Bremer at IRAM Grenoble <bremer@iram.fr>
Interferometric Millimeter Observations of GRB 010222
M. Bremer (1), A. Castro-Tirado (2,3) and R. Moreno(1) report:
(1) IRAM (Grenoble, France)
(2) IAA-CSIC (Granada, Spain)
(3) LAEFF-INTA (Madrid, Spain)
We have observed the GRB 010222 radio counterpart with the Plateau
de Bure Interferometer (PdBI) in a compact five antenna configuration
on February 24.94 - 25.11 UT, using the position from Henden et al.
(GCN 967). Weather conditions were good for wavelengths of 3mm but
marginal for 1mm. The flux calibration was relative to CRL 618
(1.55 Jy at 3mm and 2 Jy at 1mm) and is accurate to about 10%.
The source was not detected. UV fits on the phase center give the
following upper limits (fit errors are one sigma) :
93.109 GHz : -0.49 +- 0.32 mJy/beam
232.032 GHz : -0.09 +- 1.6 mJy/beam
The results have been corrected for atmospheric decorrelation.
Synthesized beams were 9.3" x 5.2" at PA -57 degrees and 3.6" by 2.3"
at PA -46 degrees, respectively. No bright sources were detected
within the primary beam.
GCN Circular 994
Subject
GRB 010222 HST/Chandra TOO
Date
2001-02-27T00:17:33Z (26 years ago)
From
Shri Kulkarni at Caltech <srk@astro.caltech.edu>
Dear Colleagues:
This note is to inform you that, under the aegis of our HST AO-9 program,
we have requested observations of GRB 010222 (GCN 959