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A detailed dive into fitting strategies for GRB afterglows with contamination: A case study with kilonovae

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arxiv 2409.07539 v2 pith:A6EKF2OD submitted 2024-09-11 astro-ph.HE

classification astro-ph.HE
keywords kilonovaobservationsafterglowcontaminationafterglowsscenariossourcebias
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Observations of gamma-ray burst afterglows have begun to readily reveal contamination from a kilonova or a supernova. This contamination presents significant challenges towards traditional methods of inferring the properties of these phenomena from observations. Given current knowledge of kilonova and afterglow modelling, observations (as expected) with near-infrared bands and at early observing times provide the greatest diagnostic power for both observing the presence of a kilonova and inferences on its properties in gamma-ray burst afterglows. However, contemporaneous observations in radio and X-ray are critical for reducing the afterglow parameter space and for more efficient parameter estimation. We compare different methods for fitting joint kilonova and afterglow observations under different scenarios. We find that ignoring the contribution of one source (even in scenarios where the source is sub-dominant) can lead to significantly biased estimated parameters but could still produce great light curve fits that do not raise suspicion. This bias is also present for analyses that fit data where one source is "subtracted". In most scenarios, the bias is smaller than the systematic uncertainty inherent to kilonova models but significant for afterglow parameters, particularly in the absence of high-quality radio and X-ray observations. Instead, we show that the most reliable method for inference in any scenario where contamination can not be confidently dismissed is to jointly fit for both an afterglow and kilonova/supernova, and showcase a Bayesian framework to make this joint analysis computationally feasible.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Gamma-ray burst progenitors revisited

    astro-ph.HE 2026-07 conditional novelty 6.0 of 10

    About 30–40% of long gamma-ray bursts at z<0.3 lack supernova emission and likely arise from compact object mergers, at rates comparable to short GRBs.

  2. IIb or not IIb: A Catalog of ZTF Kilonova Imposters

    astro-ph.HE 2025-06 conditional novelty 6.0 of 10

    A catalog of 66 spectroscopically classified ZTF kilonova imposters, mostly IIb supernovae, with a comparison showing that light-curve width and color at peak discriminate best against kilonova models, though no singl...

  3. Multi-Peaked Non-Thermal Light Curves from Magnetar-Powered Gamma-Ray Bursts

    astro-ph.HE 2024-12 conditional novelty 6.0 of 10

    Magnetar-powered GRBs should show three separate non-thermal emission peaks, with a pulsar wind nebula dominating radio emission for years (SN/LGRBs) or days (KN/SGRBs) after the burst.

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