The effects of X-ray photoionization and heating on the structure of circumstellar discs
arXiv:astro-ph/0406643 · doi:10.1111/j.1365-2966.2004.08161.x
Abstract
We present the results of a theoretical study investigating the effects of photoionization and heating by X-rays on discs around low-mass stars. In particular we address the question of whether or not X-rays can drive a disc wind. First, we construct a 1-dimensional ``quasi-hydrostatic'' model, which solves for the vertical structure introduced by X-ray heating. We consider uniform X-ray illumination of the disc, but the X-ray fluxes required to heat the disc significantly are much greater than those seen by recent observations. When the model is extended to consider heating from a central X-ray source we find that the 1-dimensional model is only valid very close to the star. We extend our analysis to consider a simple 2-dimensional model, treating the disc as a two-layered structure and solving for its density profile self-consistently. For T Tauri stars we are able to set a crude upper limit on the mass-loss rate that can be driven by X-ray photoevaporation, with a value of ~10^-13 g/cm^2/s. Our model is designed to maximise this value, and most likely over-estimates it significantly. However we still find a mass-loss rate which is less than that found in studies of ultraviolet photoevaporation. We conclude that in the presence of a significant UV field, X-ray driven disc winds are unlikely to play a significant role in the evolution of discs around low-mass stars.
11 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (36)
- Photoevaporation of Circumstellar Disks by FUV, EUV and X-ray Radiation from the Central Star
- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- Radiation-Hydrodynamic Models of X-Ray & EUV Photoevaporating Protoplanetary Discs
- On the theory of disc photoevaporation
- Protoplanetary disc evolution and dispersal: the implications of X-ray photoevaportion
- Time-Evolution of Viscous Circumstellar Disks due to Photoevaporation by FUV, EUV and X-ray Radiation from the Central Star
- The Sun in Time: Activity and Environment
- Magneto-thermal Disk Wind from Protoplanetary Disks
- X-ray irradiated protoplanetary disk atmospheres I: Predicted emission line spectrum and photoevaporation
- X-ray irradiated protoplanetary disk atmospheres II: Predictions from models in hydrostatic equilibrium
- Neon Fine-Structure Line Emission By X-ray Irradiated Protoplanetary Disks
- Diagnostic Line Emission from EUV and X-ray Illuminated Disks and Shocks around Low Mass stars
- The Structure of the Evolved Circumbinary Disk around V4046 Sgr
- On the origin of [NeII] 12.81 micron emission from pre-main sequence stars: Disks, jets, and accretion
- Constraints on the ionizing flux emitted by T Tauri stars
- The origin and evolution of transition discs: successes, problems and open questions
- Radiation hydrodynamics simulations of photoevaporation of protoplanetary disks II: Metallicity dependence of UV and X-ray photoevaporation
- Radiation Hydrodynamics Simulations of Photoevaporation of Protoplanetary Disks by Ultra Violet Radiation: Metallicity Dependence
- X-ray Photoevaporation-starved T Tauri Accretion
- From discs to planetesimals I: evolution of gas and dust discs
- Variable X-ray emission from the accretion shock in the Classical T Tauri Star V2129 Oph
- On dust entrainment in photoevaporative winds
- Photoevaporation of Grain-Depleted Protoplanetary Disks around Intermediate-Mass Stars: Investigating Possibility of Gas-Rich Debris Disks as Protoplanetary Remnants
- Towards a population synthesis of discs and planets. II. Confronting disc models and observations at the population level
- Disc wind models for FU Ori objects
- The importance of X-ray frequency in driving photoevaporative winds
- On the time evolution of the and correlations for protoplanetary discs: the viscous timescale increases with stellar mass
- Effects of X-ray irradiation and disk flaring on the [NeII] 12.8 micron emission from young stellar objects
- Measuring Organic Molecular Emission in Disks with Low Resolution Spitzer Spectroscopy
- Local semi-analytic models of magnetic flux transport in protoplanetary discs
- A quantification of hydrodynamical effects on protoplanetary dust growth
- Background X-ray Radiation Fields Produced by Young Embedded Star Clusters
- Chandra Observations of Six Peter Pan Disks: Diversity of X-ray-driven Internal Photoevaporation Rates Doesn't Explain Their Rare Longevity
- Time-dependent long-term hydrodynamic simulations of the inner protoplanetary disk III: The influence of photoevaporation
- Accretion and inter-cycle variations in the PMS interacting binary AK Sco
- On the dynamics of pebbles in protoplanetary disks with magnetically-driven winds