WTP 19aalnxx: Discovery of a Bright Mid-infrared Transient in the Emerging Class of Low-luminosity Supernovae Revealed by Delayed Circumstellar Interaction

Charlotte Myers, Kishalay De, Lin Yan, Jacob E. Jencson, Nicholas Earley, Christoffer Fremling, Daichi Hiramatsu, Mansi M. Kasliwal, Ryan M. Lau, Morgan MacLeod, Megan Masterson, Christos Panagiotou, Robert Simcoe and Samaporn Tinyanont
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Abstract

While core-collapse supernovae (SNe) often show early and consistent signs of circumstellar medium (CSM) interaction, some exhibit delayed signatures due to interaction with distant material around the progenitor star. Here we present the discovery in NEOWISE data of WTP 19aalnxx, a luminous mid-infrared (MIR) transient in the outskirts of the galaxy KUG 0022-007 at ≈190 Mpc. First detected in 2018, WTP 19aalnxx reaches a peak absolute (Vega) magnitude of ≈−22 at 4.6 μm in ≈3 yr, comparable to the most luminous interacting SNe. Archival data reveal a ≳5× fainter optical counterpart detected since 2015, while follow-up near-infrared observations in 2022 reveal an extremely red (Ks − W2 ≈ 3.7 mag) active transient. Deep optical spectroscopy confirm strong CSM interaction signatures via intermediate-width Balmer emission lines and coronal metal lines. Modeling the broadband spectral energy distribution, we estimate the presence of ≳10−2M⊙ of warm dust, likely formed in the cold dense shell. Together with the lack of nebular Fe emission, we suggest that WTP 19aalnxx is a missed, low (optical) luminosity SN in an emerging family of core-collapse SNe distinguished by their CSM-interaction-powered MIR emission that outshines the optical bands. Investigating the Zwicky Transient Facility sample of SNe with NEOWISE data, we find 16 core-collapse SNe (≳3% in a volume-limited sample) without early signs of CSM interaction that exhibit delayed IR brightening, suggestive of dense CSM shells at ≲1017 cm. We suggest that synoptic IR surveys offer a new route to revealing late-time CSM interaction and the prevalence of intense terminal mass loss in massive stars.
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WTP 19aalnxx:通过延迟恒星环相互作用在新出现的低亮度超新星中发现明亮的中红外瞬变体
虽然核坍缩超新星(SNe)通常会显示出早期和持续的周星际介质(CSM)相互作用的迹象,但有些超新星会由于与原生恒星周围遥远物质的相互作用而显示出延迟的特征。这里我们介绍在近地天体监视卫星(NEOWISE)数据中发现的WTP 19aalnxx,它是≈190 Mpc处KUG 0022-007星系外围的一个发光中红外瞬变体。WTP 19aalnxx于2018年首次被探测到,它在≈3年后的4.6 μm处达到了≈-22的绝对(织女星)星等峰值,与最亮的相互作用SNE相当。档案数据显示,自2015年以来探测到了≳5倍更暗的光学对应物,而2022年的后续近红外观测则发现了一个极红(Ks - W2 ≈ 3.7等)的活动瞬变体。深度光学光谱通过中宽巴尔默发射线和日冕金属线证实了强烈的 CSM 相互作用特征。根据宽带光谱能量分布模型,我们估计存在≳10-2M⊙的暖尘埃,很可能是在冷致密壳中形成的。再加上缺乏星云状的铁发射,我们认为WTP 19aalnxx是一个被遗漏的低(光学)光度SN,属于新出现的核心坍缩SN家族,其特征是CSM相互作用驱动的近红外发射超过了光学波段。通过利用 NEOWISE 数据对 Zwicky 瞬变设施的 SNe 样本进行调查,我们发现了 16 个没有 CSM 相互作用早期迹象的核坍缩 SNe(在体积有限的样本中占≳3%),它们表现出延迟的红外增亮,表明在≲1017 厘米处存在致密的 CSM 壳。我们认为同步红外巡天为揭示大质量恒星中晚期CSM相互作用和强烈的末期质量损失提供了一条新途径。
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