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Imaging [CI] around HD 131835: reinterpreting young debris discs with protoplanetary disc levels of CO gas as shielded secondary discs
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abstract
Despite being $>10$Myr, there are $\sim$10 debris discs with as much CO gas as in protoplanetary discs. Such discs have been assumed to be "hybrid", i.e., with secondary dust but primordial gas. Here we show that both the dust and gas in such systems could instead be secondary, with the high CO content caused by accumulation of neutral carbon (C$^0$) that shields CO from photodissociating; i.e., these could be "shielded secondary discs". New ALMA observations are presented of HD131835 that detect $\sim 3 \times 10^{-3}$ M$_\oplus$ of C$^0$, the majority 40-200au from the star, in sufficient quantity to shield the previously detected CO. A simple semi-analytic model for the evolution of CO, C and O originating in a volatile-rich planetesimal belt shows how CO shielding becomes important when the viscous evolution is slow (low $\alpha$ parameter) and/or the CO production rate is high. Shielding by C$^0$ may also cause the CO content to reach levels at which CO self-shields, and the gas disc may become massive enough to affect the dust evolution. Application to the HD 131835 observations shows these can be explained if $\alpha \sim 10^{-3}$; an inner cavity in C$^0$ and CO may also mean the system has yet to reach steady state. Application to other debris discs with high CO content finds general agreement for $\alpha=10^{-3}$ to $0.1$. The shielded secondary nature of these gas discs can be tested by searching for C$^0$, as well as CN, N$_2$ and CH$^{+}$, which are also expected to be shielded by C$^0$.
Forward citations
Cited by 3 Pith papers
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First sub-arcsecond submillimeter-wave [C I] image of 49 Ceti with ALMA
The first sub-arcsecond [C I] map of 49 Ceti reveals a double-peaked carbon gas disk inside a broad dust ring, with a [C I]/CO intensity ratio that rises toward the star (about 3) and the disk outskirts (about 10).
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New millimeter CO observations of the gas-rich debris disks 49 Cet and HD 32297
New ALMA observations show that the debris disks 49 Cet and HD 32297 harbor large CO reservoirs, supporting the shielded secondary gas disk model.
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Spatially resolved spectroscopy of the debris disk HD 32297: Further evidence of small dust grains
The debris disk HD 32297 has a gray-to-blue near-infrared spectrum, implying abundant sub-micron dust grains far below the blowout size, likely retained by gas.
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