论文标题

螺旋星云形成期间行星系统破坏的证据

Evidence for the disruption of a planetary system during the formation of the Helix Nebula

论文作者

Marshall, Jonathan P., Ertel, Steve, Birtcil, Eric, Villaver, Eva, Kemper, Francisca, Boffin, Henri, Scicluna, Peter, Kamath, Devika

论文摘要

行星系统的宿主恒星演变成其后序列阶段之后的持久性受到观察的限制很大。许多年轻的白色矮人系统表现出与灰尘(或行星可能性)及其积聚相关的红外发射和/或光谱吸收线。但是,大多数白矮人太酷了,无法充分加热任何偶色灰尘以检测到可检测的排放水平。螺旋星云(NGC 7293)是一个年轻的,附近的行星星云。在中部和远红外波长的观察结果表明,其中央白矮星(WD 2226-210)相关的过量发射。这种过剩的起源是模棱两可的。它可能是一个残留的行星带,彗星云或在轴突后巨型分支相期间脱落的材料的残留物。在这里,我们将红外线(Sofia,Spitzer,Herschel)和毫米(ALMA)观察到系统,以使用多波长成像和辐射传递模型来确定此过量的起源。我们发现数据与紧凑的残留行星皮带或杂后巨型分支盘不兼容,并得出结论,灰尘最有可能源自彗星云的沉积。测得的尘埃质量和成分晶粒的寿命意味着每年造成数千颗hale-bopp等效的彗星的破坏,以助长螺旋星云周围的白矮星周围观察到的过量排放。

The persistence of planetary systems after their host stars evolve into their post-main sequence phase is poorly constrained by observations. Many young white dwarf systems exhibit infrared excess emission and/or spectral absorption lines associated with a reservoir of dust (or planetesimals) and its accretion. However, most white dwarfs are too cool to sufficiently heat any circumstellar dust to detectable levels of emission. The Helix Nebula (NGC 7293) is a young, nearby planetary nebula; observations at mid- and far-infrared wavelengths revealed excess emission associated with its central white dwarf (WD 2226-210). The origin of this excess is ambiguous. It could be a remnant planetesimal belt, a cloud of comets, or the remnants of material shed during the post-asymptotic giant branch phase. Here we combine infrared (SOFIA, Spitzer, Herschel ) and millimetre (ALMA) observations of the system to determine the origin of this excess using multi-wavelength imaging and radiative transfer modelling. We find the data are incompatible with a compact remnant planetesimal belt or post-asymptotic giant branch disc, and conclude the dust most likely originates from deposition by a cometary cloud. The measured dust mass, and lifetime of the constituent grains, implies disruption of several thousand Hale-Bopp equivalent comets per year to fuel the observed excess emission around the Helix Nebula's white dwarf.

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