Near-Infrared Spectroscopy of TW Hya: A Revised Spectral Type and Comparison with Magnetospheric Accretion Models
arXiv:1102.0535 · doi:10.1088/0004-637X/732/1/8
Abstract
We present high signal-to-noise, moderate spectral resolution (R ~ 2000-2500) near-infrared (0.8-5.0 micron) spectroscopy of the nearby T Tauri star TW Hya. By comparing the spectrum and the equivalent widths of several atomic and molecular features with those for stars in the IRTF near-infrared library, we revise the spectral type to M2.5V, which is later than usually adopted (K7V). This implies a substantially cooler stellar temperature than previously assumed. Comparison with various pre-main sequence models suggests that TW Hya is only ~3 Myr old; much younger than the usually adopted 8 - 10 Myr. Analysis of the relative strengths of the H lines seen in the spectrum yields estimates for the temperature and density of the emitting region of T_e > 7500 K and n_e ~ 10^{12} - 10^{13} cm^{-3}. The thickness of the emitting region is 10^2 - 10^4 km and the covering fraction is f_\ast ~ 0.04. Our derived physical parameter values agree with the predictions of the magnetospheric accretion scenario. The highest signal-to-noise H lines have profiles that indicate multiple emission components. We derive an excess spectrum (above that of the M2.5V template) that peaks in the H band. Although our derived veiling values, ~ 0.1, agree with previous estimates, the excess spectrum does not match that of current models in which this flux is generated by an inner optically thin disk. We suggest that the excess flux spectrum instead reflects the differences in atmospheric opacity, gravity, and age between TW Hya and older, higher gravity field M2.5 dwarfs.
43 pages, 12 figures; accepted for publication in ApJ
References in corpus (10)
- Search for Associations Containing Young stars (SACY): I. Sample & Searching Method
- Young L Dwarfs Identified in the Field: A Preliminary Low-Gravity, Optical Spectral Sequence from L0 to L5
- Probing T Tauri Accretion and Outflow with 1 Micron Spectroscopy
- Demographics of Transition Objects
- An Inner Hole in the Disk around TW Hydrae Resolved in 7 Millimeter Dust Emission
- Spitzer Spectroscopy of the Transition Object TW Hya
- The Age, Stellar Content and Star Formation Timescale of the B59 Dense Core
- High-resolution Spectroscopy of [Ne II] Emission from TW Hya
- Spatially and Spectrally Resolved Hydrogen Gas within 0.1 AU of T Tauri and Herbig Ae/Be Stars
- Physical Conditions of Accreting Gas in T Tauri Star Systems
Cited by in corpus (66)
- Intrinsic Colors, Temperatures, and Bolometric Corrections of Pre-Main Sequence Stars
- Forming the cores of giant planets from the radial pebble flux in protoplanetary discs
- An Optical Spectroscopic Study of T Tauri Stars. I. Photospheric Properties
- Streams, substructures and the early history of the Milky Way
- An Old Disk That Can Still Form a Planetary System
- Sintering-induced Dust Ring Formation in Protoplanetary Disks: Application to the HL Tau Disk
- The TW Hya Disk at 870 microns: Comparison of CO and Dust Radial Structures
- Constraining the X-ray and Cosmic Ray Ionization Chemistry of the TW Hya Protoplanetary Disk: Evidence for a Sub-interstellar Cosmic Ray Rate
- Three radial gaps in the disk of TW Hydrae imaged with SPHERE
- The Radial Distribution of H2 and CO in TW Hya as Revealed by Resolved ALMA Observations of CO Isotopologues
- Volatile carbon locking and release in protoplanetary disks. A study of TW Hya and HD 100546
- Direct mapping of the temperature and velocity gradients in discs. Imaging the vertical CO snow line around IM Lupi
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- Placing the spotted T Tauri star LkCa 4 on an HR diagram
- The 0.5-2.22-micron Scattered Light Spectrum of the Disk Around TW Hya: Detection of a Partially Filled Disk Gap at 80 AU
- Spectral variability of classical T Tauri stars accreting in an unstable regime
- Chasing Shadows: Rotation of the Azimuthal Asymmetry in the TW Hya Disk
- A Survey for New Members of the Taurus Star-Forming Region with the Sloan Digital Sky Survey
- Distance and Kinematics of the TW Hydrae Association from Parallaxes
- CO mass upper limits in the Fomalhaut ring - the importance of NLTE excitation in debris discs and future prospects with ALMA
- Exploring the Origins of Carbon in Terrestrial Worlds
- Chemistry in Protoplanetary Disks: the gas-phase CO/H2 ratio and the Carbon reservoir
- Infrared spectroscopy of eruptive variable protostars from VVV
- An extensive VLT/X-Shooter library of photospheric templates of pre-main sequence stars
- Evidence for a CO desorption front in the outer AS 209 disk
- Characterizing TW Hydra
- Uncertainties in water chemistry in disks: An application to TW Hya
- New Constraints From Dust Lines On The Surface Densities Of Protoplanetary Disks
- TW Hya: Spectral Variability, X-Rays, and Accretion Diagnostics
- NGC 1980 is not a foreground population of Orion: Spectroscopic survey of young stars with low extinction in Orion A
- Characterizing the stellar photospheres and near-infrared excesses in accreting T Tauri systems
- Carbon depletion observed inside T Tauri inner rims: Formation of icy, kilometer size planetesimals by 1 Myr
- Using Ice and Dust Lines to Constrain the Surface Densities of Protoplanetary Disks
- Deep imaging search for planets forming in the TW Hya protoplanetary disk with the Keck/NIRC2 vortex coronagraph
- The hybrid disks: a search and study to better understand evolution of disks
- Probing the Flare Atmospheres of M dwarfs Using Infrared Emission Lines
- Gas and dust in the TW Hydrae Association as seen by the Herschel Space Observatory
- A measure of the size of the magnetospheric accretion region in TW Hydrae
- A Census of the TW Hya Association with Gaia
- The ionising effect of low energy cosmic rays from a class II object on its protoplanetary disk
- The Effects of Starspots on Spectroscopic Mass Estimates of Low-mass Young Stars
- Interpreting Near Infrared Hydrogen Line Ratios in T Tauri Stars
- The influence of radiative core growth on coronal X-ray emission from pre-main sequence stars
- Steepening of the 820 micron continuum surface-brightness profile signals dust evolution in TW Hya's disk
- 2MASS J15460752-6258042: a mid-M dwarf hosting a prolonged accretion disc
- Characterization of low-mass companion HD 142527 B
- Redshifted X-rays from the material accreting onto TW Hya: evidence of a low-latitude accretion spot
- Herschel-PACS observations of far-IR lines in YSOs I: [OI] and H2O at 63 microns
- Surveying the Giant HII Regions of the Milky Way with SOFIA: I. W51A
- Anomalous Accretion Activity and the Spotted Nature of the DQ Tau Binary System
- Probing the presence of planets in transition discs' cavities via warps: the case of TW Hya
- Structure and Dynamics of the Accretion Process and Wind in TW Hya
- X-Shooter spectroscopy of young stellar objects - VI - HI line decrements
- Discovery of Line Pressure Broadening and Direct Constraint on Gas Surface Density in a Protoplanetary Disk
- The inner structure of the TW Hya Disk as revealed in scattered light
- A stable quasi-periodic 4.18 d oscillation and mysterious occultations in the 2011 MOST light curve of TWHya
- Is T Tauri North a 'Classical' T Tauri star?
- Star Cluster Formation in Orion A
- Correlating Changes in Spot Filling Factors with Stellar Rotation: The Case of LkCa 4
- Photoevaporation Does Not Create a Pileup of Giant Planets at 1 AU
- Non-LTE Modelling of the Structure and Spectra of the Hot Accretion Spots on the Surface of Young Stars
- A Chandra Observation of the TW Hydrae Association Brown Dwarf 2MASSW J1139511-315921
- High-contrast integral field spectropolarimetry of planet-forming disks with SCExAO/CHARIS
- New Mid-Infrared Imaging Constraints on Companions and Protoplanetary Disks around six Young Stars
- Anomalous Spectral Types and Intrinsic Colors of Young Stars
- Evidence of Accretion Burst: The Viscously Heated Inner Disk of the Embedded Protostar IRAS 16316-1540