Estimated redshift from machine learning (Ukwatta et al. 2016) - may take a few minutes to calcaulte
Image
Pre-slew 15-350 keV image (Event data; bkg subtracted)
# RAcent DECcent POSerr Theta Phi Peak Cts SNR Name
299.9726 +35.3521 0.0095 4.2 -6.0 2.5235 20.3 TRIG_01216911
------------------------------------------
Foreground time interval of the image:
0.000 64.000 (delta_t = 64.000 [sec])
Background time interval of the image:
Lightcurves
Notes:
- 1) All plots contain as much data as has been downloaded to date.
- 2) The mask-weighted light curves are using the flight position.
- 3) Multiple plots of different time binning/intervals are shown to cover all scenarios of short/long GRBs, rate/image triggers, and real/false positives.
- 4) For all the mask-weighted lightcurves, the y-axis units are counts/sec/det where a det is 0.4 x 0.4 = 0.16 sq cm.
- 5) The verticle lines correspond to following: green dotted lines are T50 interval, black dotted lines are T90 interval, blue solid line(s) is a spacecraft slew start time, and orange solid line(s) is a spacecraft slew end time.
- 6) Time of each bin is in the middle of the bin.
1 s binning
From T0-310 s to T0+310 s
From T100_start - 20 s to T100_end + 30 s
Full time interval
64 ms binning
Full time interval
From T100_start to T100_end
From T0-5 sec to T0+5 sec
16 ms binning
From T100_start-5 s to T100_start+5 s
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
8 ms binning
From T100_start-3 s to T100_start+3 s
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
2 ms binning
From T100_start-1 s to T100_start+1 s
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
SN=5 or 10 sec. binning (whichever binning is satisfied first)
SN=5 or 10 sec. binning (T < 200 sec)
Spectra
Notes:
- 1) The fitting includes the systematic errors.
- 2) For long bursts, a spectral fit of the pre-slew DRM will introduce some errors in both a spectral shape and a normalization if the PHA file contains a lot of the slew/post-slew time interval.
- 3) For fits to more complicated models (e.g. a power-law over a cutoff power-law), the BAT team has decided to require a chi-square improvement of more than 6 for each extra dof.
- 4) For short bursts (T90<1sec), the specrtum is also fit with Blackbody, OTTB, and Double Blackbody.
Time averaged spectrum fit using the pre-slew DRM
Power-law model
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.79814 ( -0.113688 0.115845 )
Norm@50keV : 2.26871E-03 ( -0.000158571 0.000156873 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 52.68 using 59 PHA bins.
# Reduced chi-squared = 0.9242 for 57 degrees of freedom
# Null hypothesis probability = 6.376978e-01
Photon flux (15-150 keV) in 64 sec: 0.312397 ( -0.0193369 0.0193515 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.33679e-06 ( -9.51699e-08 9.61632e-08 ) ergs/cm2
Cutoff power-law model
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in the cutoff power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.52021 ( -0.471107 0.359863 )
Epeak [keV] : 77.2245 ( -27.6355 -77.2247 )
Norm@50keV : 3.22401E-03 ( -0.00107004 0.00257103 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 51.45 using 59 PHA bins.
# Reduced chi-squared = 0.9187 for 56 degrees of freedom
# Null hypothesis probability = 6.475965e-01
Photon flux (15-150 keV) in 64 sec: 0.308017 ( -0.020412 0.020402 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29775e-06 ( -1.12058e-07 1.12614e-07 ) ergs/cm2
Band function
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in the Band function:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
alpha : 0.654855 ( -2.14728 0.439053 )
beta : -1.93577 ( 1.92789 0.171217 )
Epeak [keV] : 30.1482 ( -16.3225 54.0372 )
Norm@50keV : 0.121181 ( -0.121143 142.614 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 48.82 using 59 PHA bins.
# Reduced chi-squared = 0.8877 for 55 degrees of freedom
# Null hypothesis probability = 7.083337e-01
Photon flux (15-150 keV) in 64 sec: ( ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29929e-06 ( -1.29884e-06 -1.00685e-07 ) ergs/cm2
Single BB
Spectral model blackbody:
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT [keV] : 11.2701 (-0.890123 0.981336)
R^2/D10^2 : 9.18429E-02 (-0.0246509 0.0332668)
(R is the radius in km and D10 is the distance to the source in units of 10 kpc)
------------------------------------------------------------
#Fit statistic : Chi-Squared = 113.24 using 59 PHA bins.
# Reduced chi-squared = 1.9867 for 57 degrees of freedom
# Null hypothesis probability = 1.363772e-05
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 1.567e-07 1.734e-08
25- 50 4.569e-07 3.142e-08
50-150 3.339e-07 4.960e-08
15-150 9.475e-07 7.264e-08
Thermal bremsstrahlung (OTTB)
XSPEC12>exit
XSPEC: quit
Spectral model: thermal bremsstrahlung
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT [keV] : 100.363 (-21.52 33.2346)
Norm : 1.37105 (-0.118915 0.134625)
------------------------------------------------------------
Reduced chi-squared =
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 2.294e-07 2.518e-08
25- 50 3.969e-07 2.768e-08
50-150 6.445e-07 2.022e-07
15-150 1.271e-06 2.272e-07
Double BB
XSPEC12>exit
XSPEC: quit
Spectral model: bbodyrad<1> + bbodyrad<2>
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT1 [keV] : 6.55541 (-0.992601 1.07456)
R1^2/D10^2 : 0.501266 (-0.204288 0.398555)
kT2 [keV] : 24.4245 (-4.82598 8.14816)
R2^2/D10^2 : 3.87740E-03 (-0.0024615 0.00505588)
------------------------------------------------------------
Reduced chi-squared =
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 2.319e-07 4.774e-08
25- 50 3.933e-07 7.638e-08
50-150 6.796e-07 2.643e-07
15-150 1.305e-06 3.794e-07
Peak spectrum fit
Power-law model
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.79814 ( -0.113688 0.115845 )
Norm@50keV : 2.26871E-03 ( -0.000158571 0.000156873 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 52.68 using 59 PHA bins.
# Reduced chi-squared = 0.9242 for 57 degrees of freedom
# Null hypothesis probability = 6.376978e-01
Photon flux (15-150 keV) in 64 sec: 0.312397 ( -0.0193369 0.0193515 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.33679e-06 ( -9.51699e-08 9.61632e-08 ) ergs/cm2
Cutoff power-law model
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in the cutoff power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.52021 ( -0.471107 0.359863 )
Epeak [keV] : 77.2245 ( -27.6355 -77.2247 )
Norm@50keV : 3.22401E-03 ( -0.00107004 0.00257103 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 51.45 using 59 PHA bins.
# Reduced chi-squared = 0.9187 for 56 degrees of freedom
# Null hypothesis probability = 6.475965e-01
Photon flux (15-150 keV) in 64 sec: 0.308017 ( -0.020412 0.020402 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29775e-06 ( -1.12058e-07 1.12614e-07 ) ergs/cm2
Band function
Time interval is from 0.000 sec. to 64.000 sec.
Spectral model in the Band function:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
alpha : 0.654855 ( -1.66099 0.439053 )
beta : -1.93577 ( 1.92789 0.171217 )
Epeak [keV] : 30.1482 ( -16.3225 54.0372 )
Norm@50keV : 0.121181 ( -0.121143 142.614 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 48.82 using 59 PHA bins.
# Reduced chi-squared = 0.8877 for 55 degrees of freedom
# Null hypothesis probability = 7.083337e-01
Photon flux (15-150 keV) in 64 sec: ( ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29929e-06 ( -1.29884e-06 -1.00685e-07 ) ergs/cm2
Single BB
XSPEC: quit
Spectral model blackbody:
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT [keV] : 11.2701 (-0.890123 0.981336)
R^2/D10^2 : 9.18429E-02 (-0.0246509 0.0332668)
(R is the radius in km and D10 is the distance to the source in units of 10 kpc)
------------------------------------------------------------
Reduced chi-squared =
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 1.567e-07 1.818e-08
25- 50 4.569e-07 3.274e-08
50-150 3.339e-07 5.146e-08
15-150 9.475e-07 6.432e-08
Thermal bremsstrahlung (OTTB)
XSPEC12>exit
XSPEC: quit
Spectral model: thermal bremsstrahlung
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT [keV] : 100.363 (-21.52 33.2346)
Norm : 1.37105 (-0.118915 0.134625)
------------------------------------------------------------
Reduced chi-squared =
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 2.294e-07 2.490e-08
25- 50 3.969e-07 2.838e-08
50-150 6.445e-07 2.058e-07
15-150 1.271e-06 2.147e-07
Double BB
XSPEC12>exit
XSPEC: quit
Spectral model: bbodyrad<1> + bbodyrad<2>
------------------------------------------------------------
Parameters : value Lower 90% Upper 90%
kT1 [keV] : 6.55541 (-0.992601 1.07456)
R1^2/D10^2 : 0.501266 (-0.204288 0.398555)
kT2 [keV] : 24.4245 (-4.82598 8.14816)
R2^2/D10^2 : 3.87740E-03 (-0.0024615 0.00505588)
------------------------------------------------------------
Reduced chi-squared =
Energy Fluence 90% Error
[keV] [erg/cm2] [erg/cm2]
15- 25 2.319e-07 4.832e-08
25- 50 3.933e-07 6.822e-08
50-150 6.796e-07 2.644e-07
15-150 1.305e-06 3.668e-07
Pre-slew spectrum (Pre-slew PHA with pre-slew DRM)
Power-law model
Spectral model in power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.79814 ( -0.113688 0.115845 )
Norm@50keV : 2.26871E-03 ( -0.000158571 0.000156873 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 52.68 using 59 PHA bins.
# Reduced chi-squared = 0.9242 for 57 degrees of freedom
# Null hypothesis probability = 6.376978e-01
Photon flux (15-150 keV) in 64 sec: 0.312397 ( -0.0193369 0.0193515 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.33679e-06 ( -9.51699e-08 9.61632e-08 ) ergs/cm2
Cutoff power-law model
Spectral model in the cutoff power-law:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
Photon index: 1.52021 ( -0.471107 0.359863 )
Epeak [keV] : 77.2245 ( -27.6355 -77.2247 )
Norm@50keV : 3.22401E-03 ( -0.00107004 0.00257103 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 51.45 using 59 PHA bins.
# Reduced chi-squared = 0.9187 for 56 degrees of freedom
# Null hypothesis probability = 6.475965e-01
Photon flux (15-150 keV) in 64 sec: 0.308017 ( -0.020412 0.020402 ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29775e-06 ( -1.12058e-07 1.12614e-07 ) ergs/cm2
Band function
Spectral model in the Band function:
------------------------------------------------------------
Parameters : value lower 90% higher 90%
alpha : 0.654855 ( -2.00647 0.439053 )
beta : -1.93577 ( 1.92789 0.171217 )
Epeak [keV] : 30.1482 ( -16.3225 54.0372 )
Norm@50keV : 0.121181 ( -0.121143 142.614 )
------------------------------------------------------------
#Fit statistic : Chi-Squared = 48.82 using 59 PHA bins.
# Reduced chi-squared = 0.8877 for 55 degrees of freedom
# Null hypothesis probability = 7.083337e-01
Photon flux (15-150 keV) in 64 sec: ( ) ph/cm2/s
Energy fluence (15-150 keV) : 1.29929e-06 ( -1.29884e-06 -1.00685e-07 ) ergs/cm2
S(25-50 keV) vs. S(50-100 keV) plot
S(25-50 keV) = 3.76e-07
S(50-100 keV) = 4.33e-07
T90 vs. Hardness ratio plot
T90 = 64 sec.
Hardness ratio (energy fluence ratio) = 1.1516
Color vs. Color plot
Count Ratio (25-50 keV) / (15-25 keV) = 1.18712
Count Ratio (50-100 keV) / (15-25 keV) = 0.674337
Mask shadow pattern
IMX = 7.376357524615079E-02, IMY = 7.698148680513009E-03
TIME vs. PHA plot around the trigger time
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
TIME vs. DetID plot around the trigger time
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
100 us light curve (15-350 keV)
Blue+Cyan dotted lines: Time interval of the scaled map
From 0.000000 to 64.000000
Spacecraft aspect plot
Bright source in the pre-burst/pre-slew/post-slew images
Pre-burst image of 15-350 keV band
Time interval of the image:
Pre-slew background subtracted image of 15-350 keV band
Time interval of the image:
0.000000 64.000000
# RAcent DECcent POSerr Theta Phi PeakCts SNR AngSep Name
# [deg] [deg] ['] [deg] [deg] [']
254.5534 35.1379 0.0 39.2 46.2 -0.2509 -0.9 13.1 Her X-1
268.3824 -1.4522 79.6 51.4 -7.0 -0.0401 -0.1 0.9 SW J1753.5-0127
288.8633 10.9050 5.1 30.4 -24.8 0.3460 2.3 4.5 GRS 1915+105
299.8025 35.2220 1.1 4.4 -5.9 1.2689 10.3 10.5 Cyg X-1
308.2682 41.0447 29.2 4.4 173.3 0.0460 0.4 9.0 Cyg X-3
326.1665 38.3175 21.6 17.4 -152.4 0.0663 0.5 0.3 Cyg X-2
252.7591 7.5551 2.1 55.2 14.9 3.7264 5.5 ------ UNKNOWN
Post-slew image of 15-350 keV band
Time interval of the image:
104.900600 243.018100
# RAcent DECcent POSerr Theta Phi PeakCts SNR AngSep Name
# [deg] [deg] ['] [deg] [deg] [']
254.6131 35.2631 192.0 36.7 57.2 0.0336 0.1 9.0 Her X-1
268.3179 -1.4708 4.3 47.2 -0.6 1.1999 2.6 3.2 SW J1753.5-0127
273.9789 -14.0971 7.3 55.2 -15.1 1.2184 1.6 4.0 GX 17+2
288.7866 10.9749 5.0 26.4 -20.9 -0.5572 -2.3 1.9 GRS 1915+105
299.8124 35.2293 0.8 0.2 1.8 3.3871 14.1 11.0 Cyg X-1
307.9273 40.8852 3.7 8.4 179.9 0.6700 3.1 9.2 Cyg X-3
326.0882 38.1208 0.0 21.0 -151.6 0.6016 2.6 12.7 Cyg X-2
287.9237 -18.6409 2.0 55.2 -32.3 7.9420 5.9 ------ UNKNOWN
341.7388 13.7273 2.7 43.3 -117.0 4.3963 4.2 ------ UNKNOWN
Plot creation:
Fri Feb 23 22:20:19 EST 2024