JWST对EX - up的更清晰的观察:吸积爆发期间冰升华产生的冷水

Sarah A. Smith, Carlos E. Romero-Mirza, Andrea Banzatti, Christian Rab, Péter Ábrahám, Ágnes Kóspál, Rik Claes, Carlo F. Manara, Karin I. Öberg, Jeroen Bouwman, Fernando Cruz-Sáenz de Miera and Joel D. Green
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引用次数: 0

摘要

在金牛座T星主序演化前的不稳定吸积阶段,对行星形成区域产生了可变的辐射和加热。2008年,spitzer -红外光谱仪观测到exlup (EXor变量的原型)发生了强烈的吸积爆发,发现中红外水和OH发射增加,有机发射减少,表明化学变化较大。我们在这里展示了JWST-MIRI在2022年和2023年的两个静态EX - Lup时期,这是在2008年爆发后的十年多时间里获得的,也是在2022年中度爆发后的几个月。有了JWST更清晰的光谱视图,我们现在可以分析两个MIRI时期的水发射作为温度的函数,也可以近似地分析之前斯皮策时期的水发射。这一新的分析表明,在2008年爆发期间,低能线上出现了强烈的冷水蒸气“爆发”,我们认为这是由于雪线衰退导致冰升华增强的明确证据,正如在原恒星包层中发现的那样。JWST显示,与其他金牛座T盘相比,EX - Lup仍然有异常强烈的冷水发射,这表明内盘表面的冻结时间尺度长达100 - 10年。EX - Lup表明,爆发可以显著改变观测到的有机水比,增加冷水储层,为研究盘的近期吸积历史提供化学特征。这项研究为II类阶段的吸积爆发引发的化学进化提供了前所未有的证明,并为时域实验揭示可能对雪线附近的行星形成体具有基本含义的过程提供了高潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
JWST’s Sharper View of EX Lup: Cold Water from Ice Sublimation during Accretion Outbursts
The unstable accretion phases during pre-main-sequence evolution of T Tauri stars produce variable irradiation and heating of planet-forming regions. A strong accretion outburst was observed with Spitzer-InfraRed Spectrograph in 2008 in EX Lup, the prototype of EXor variables, and found to increase the mid-infrared water and OH emission and decrease organic emission, suggesting large chemical changes. We present here two JWST-MIRI epochs of quiescent EX Lup in 2022 and 2023 obtained over a decade after the 2008 outburst and several months after a moderate burst in 2022. With JWST’s sharper spectral view, we can now analyze water emission as a function of temperature in the two MIRI epochs and, approximately, also in the previous Spitzer epochs. This new analysis shows a strong cold water vapor “burst” in low-energy lines during the 2008 outburst, which we consider clear evidence for enhanced ice sublimation due to a recession of the snowline, as found in protostellar envelopes. JWST shows that EX Lup still has an unusually strong emission from cold water in comparison to other T Tauri disks, suggesting >10 yr long freeze-out timescales in the inner disk surface. EX Lup demonstrates that outbursts can significantly change the observed organic-to-water ratios and increase the cold water reservoir, providing chemical signatures to study the recent accretion history of disks. This study provides an unprecedented demonstration of the chemical evolution triggered by accretion outbursts in the class II phase and of the high potential of time-domain experiments to reveal processes that may have fundamental implications on planet-forming bodies near the snowline.
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