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Inferring CSM Properties of Type II SNe Using a Magnitude-Limited ZTF Sample

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arxiv 2503.19969 v3 pith:KIANOVPA submitted 2025-03-25 astro-ph.HE

classification astro-ph.HE
keywords progenitortypecurvelightpropertiessamplemagnitude-limitedpre-explosion
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Although all Type II supernovae (SNe) originate from massive stars possessing a hydrogen-rich envelope, their light curve morphology is diverse, reflecting poorly characterised heterogeneity in the physical properties of their progenitor systems. Here, we present a detailed light curve analysis of a magnitude-limited sample of 639 Type II SNe from the Zwicky Transient Facility Bright Transient Survey. Using Gaussian processes, we systematically measure empirical light curve features (e.g. rise times, peak colours and luminosities) in a robust sampling-independent manner. We focus on rise times as they are highly sensitive to pre-explosion progenitor properties, especially the presence of a dense circumstellar medium (CSM) shed by the progenitor in the years immediately pre-explosion. By correlating our feature measurements with physical parameters from an extensive grid of STELLA hydrodynamical models with varying progenitor properties (CSM structure, $\dot M$, $R_{CSM}$ and $M_{ZAMS}$), we quantify the proportion of events with sufficient pre-explosion mass-loss to significantly alter the initial light curve (roughly $M_{CSM} \geq 10^{-2.5} M_{\odot}$) in a highly complete sample of 377 spectroscopically classified Type II SNe. We find that 67 $\pm$ 6\% of observed SNe in our magnitude-limited sample show evidence for substantial CSM ($M_{CSM} \geq 10^{-2.5} M_{\odot}$) close to the progenitor ($R_{CSM} <10^{15}$ cm) at the time of explosion. After applying a volumetric-correction, we find 36$^{+5}_{-7}$\% of all Type II SN progenitors possess substantial CSM within $10^{15}$ cm at the time of explosion. This high fraction of progenitors with dense CSM, supported by photometric and spectroscopic evidence of previous SNe, reveals mass-loss rates significantly exceeding those measured in local group red supergiants or predicted by current theoretical models.

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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. Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes

    astro-ph.SR 2026-07 conditional novelty 5.0 of 10

    Trained on STELLA grids, two autoencoder-plus-emulator surrogates reconstruct type II SN SEDs at ~1e-4 MSE and recover progenitor masses for SN 2005cs, SN 2012aw, and SN 1999em in minutes.

  2. Red Supergiant Mass Loss and Mass-Loss Rates

    astro-ph.SR 2025-07 conditional novelty 3.0 of 10

    A synthesis review concluding that red supergiant mass loss is gravity-driven, metallicity-independent in rate, and bimodal, with low-mass stars keeping their mantles to core collapse and massive stars shedding them t...

  3. SN 2023ixf: The Closest Supernova of the Decade

    astro-ph.HE 2025-07 unverdicted novelty 1.0 of 10

    SN 2023ixf is a type II supernova that exploded inside dense, confined circumstellar material lost by its red supergiant progenitor in the final years before explosion, as established by synthesizing over 80 published...

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