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Mean a100

This page presents lightcurves for Mean a100 produced using the KEPLER simulation code, and analysed following Lampe, Heger & Galloway (2015).

The curve presented here is as measured in the neutron star's Newtonian rest frame. To compare this to an observation it is necessary to apply redshift corrections. Instructions for doing this are provided in the companion paper and a summary is provided here

This averaged lightcurve comes from a train of 19 bursts that can be viewed here


Lightcurve

The mean luminosity (green line, left-hand y-axis), is plotted with the lighter green band giving the 1-sigma error calculated from the variation in the lightcurves included in the average. The radius is shown in blue (right-hand y-axis)


Parameters

The following table presents the initial conditions for the model and if a burst occurred, the average burst parameters.

NameValueUnitDescription
modela100--Model ID
num19--Number of simulated bursts
z0.4%Metallicity mass fraction
h74.9%Hydrogen mass fraction
lAcc0.9--Accretion luminosity (1)
burstLength550.1 ± 100.3sBurst duration
peakLum4.55 ± 0.310+30WPeak lumonisity
persLum9.63 ± 2.1610+28WPersistent luminsoity
fluence5.54 ± 0.9410+32WFluence
tau120.9 ± 17.3sEquivalent burst duration (tau)
tDel0.33 ± 0.01hRecurrence time
conv4.62 ± 1.22%Convexity
r10906.077 ± 0.167s10% rise time
r25905.002 ± 0.168s25% rise time
singAlpha0.49 ± 0.02--Power law decay index
singDecay73.64 ± 14.17sExponential decay timescale
alpha41.2 ± 10.3--Fluence ratio (alpha)
flag4--Analysis quality flag (2)

(1) The accretion rate is in terms of the Eddington accretion rate $(1.75 \times 10^{-8} \, \mathrm{M}_\odot \, \mathrm{yr}^{-1})$

(2) Guide To Analyis Flags

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Page last modified on December 21, 2015, at 06:57 PM