Diffuse interstellar band at 8620 Å in RAVE: A new method for detecting the diffuse interstellar band in spectra of cool stars
arXiv:1309.4273 · doi:10.1088/0004-637X/778/2/86
Abstract
Diffuse interstellar bands are usually observed in spectra of hot stars, where interstellar lines are rarely blended with stellar ones. The need for hot stars is a strong limitation in the number of sightlines we can observe and the distribution of sightlines in the Galaxy, as hot stars are rare and concentrated in the Galactic plane. We are introducing a new method, where interstellar lines can be observed in spectra of cool stars in large spectroscopic surveys. The method is completely automated and does not require prior knowledge of the stellar parameters. If known, the stellar parameters only reduce the computational time and are not involved in the extraction of the interstellar spectrum. The main step in extracting interstellar lines is a construction of the stellar spectrum, which is in our method done by finding other observed spectra that lack interstellar features and are otherwise very similar to the spectrum in question. Such spectra are then combined into a single stellar spectrum template, which matches the stellar component in an observed spectrum. We demonstrate the performance of this new method on a sample of 482,430 spectra observed in RAVE survey. However, many spectra have to be combined (48 on average) in order to achieve a S/N ratio high enough to measure the DIB's profile, hence limiting the spatial information about the ISM. Only one strong interstellar line is included in the RAVE spectral range, a diffuse interstellar band at 8620 Å. We compare its equivalent width with extinction maps and with Bayesian reddening, calculated for individual stars, and provide a linear relation between the equivalent width and reddening. Separately from the introduced method, we calculate equivalent widths of the diffuse interstellar band in spectra of hot stars with known extinction and compare all three linear relations with each other and with relations from the literature.
12 pages, 10 figures, submitted to ApJ
References in corpus (17)
- The Radial Velocity Experiment (RAVE): first data release
- Scaled solar tracks and isochrones in a large region of the Z-Y plane I. From the ZAMS to the TP-AGB end for 0.15 - 2.5 Mo stars
- The RAdial Velocity Experiment (RAVE): Fourth data release
- The Radial Velocity Experiment (RAVE): second data release
- Studies of the Diffuse Interstellar Bands. III. HD 183143
- New distances to RAVE stars
- The VLT-FLAMES Tarantula Survey. IX. The interstellar medium seen through Diffuse Interstellar Bands and neutral sodium
- Diffuse interstellar bands in RAVE Survey spectra
- Properties of Diffuse Interstellar Bands at Different Physical Conditions of the ISM
- Exploring the Morphology of RAVE Stellar Spectra
- Detection of diffuse interstellar bands in M31
- Detections of Diffuse Interstellar Bands in the SDSS Low-resolution Spectra
- Detection of Diffuse Interstellar Bands in the z=0.5 Damped Lyman alpha system towards AO 0235+164
- Chromospherically Active Stars in the RAVE Survey. I. The Catalogue
- Spatial Variations of Galaxy Number Counts in the Sloan Digital Sky Survey. II. Test of Galactic Extinction in High Extinction Regions
- Extracting interstellar diffuse absorption bands from cool star spectra: Application to bulge clump giants in Baade's window
- A New Galactic Extinction Map in High Ecliptic Latitudes
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- Solar and Stellar Photospheric Abundances
- Gaia Data Release 3: Exploring and mapping the diffuse interstellar band at 862 nm
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- Diffuse interstellar bands λ5780 and λ5797 in the Antennae Galaxy as seen by MUSE
- The diffuse interstellar band around 8620 Å I. Methods and application to the GIBS data set
- Measuring Optical Extinction Towards Young Stellar Objects Using Diffuse Interstellar Bands
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- Solid confirmation of the broad DIB around 864.8 nm using stacked Gaia-RVS spectra
- Measuring the Diffuse Interstellar Bands at 5780, 5797, and 6614 Å in Low-Resolution Spectra of Cool Stars from LAMOST
- The Pristine Inner Galaxy Survey (PIGS) VI: Different vertical distributions between two DIBs at 442.8 nm and 862.1 nm
- Spectroscopic analysis of VVV CL001 cluster with MUSE