# The Solar Neighborhood. XIX. Discovery and Characterization of 33 New   Nearby White Dwarf Systems

**Authors:** John P. Subasavage (1), Todd J. Henry (1), P. Bergeron (2), P. Dufour, (2), Nigel C. Hambly (3), Thomas D. Beaulieu (1) ((1) Georgia State, University, (2) University of Montreal, (3) University of Edinburgh Royal, Observatory)

arXiv: 0704.0894 · 2009-09-29

## TL;DR

This study discovers and characterizes 33 new nearby white dwarf systems, expanding the local white dwarf sample by approximately 18%, and provides detailed spectral and photometric analysis to estimate their physical parameters.

## Contribution

The paper reports the discovery of 33 new white dwarf systems and presents their spectral classification, photometric analysis, and estimated distances, significantly increasing the known nearby white dwarf population.

## Key findings

- 18% increase in nearby white dwarf sample
- Identification of unresolved double degenerates
- Characterization of a cool, infrared-absorbing white dwarf

## Abstract

We present spectra for 33 previously unclassified white dwarf systems brighter than V = 17 primarily in the southern hemisphere. Of these new systems, 26 are DA, 4 are DC, 2 are DZ, and 1 is DQ. We suspect three of these systems are unresolved double degenerates. We obtained VRI photometry for these 33 objects as well as for 23 known white dwarf systems without trigonometric parallaxes, also primarily in the southern hemisphere. For the 56 objects, we converted the photometry values to fluxes and fit them to a spectral energy distribution using the spectroscopy to determine which model to use (i.e. pure hydrogen, pure helium, or metal-rich helium), resulting in estimates of effective temperature and distance. Eight of the new and 12 known systems are estimated to be within the NStars and Catalogue of Nearby Stars (CNS) horizons of 25 pc, constituting a potential 18% increase in the nearby white dwarf sample. Trigonometric parallax determinations are underway via CTIOPI for these 20 systems.   One of the DCs is cool so that it displays absorption in the near infrared. Using the distance determined via trigonometric parallax, we are able to constrain the model-dependent physical parameters and find that this object is most likely a mixed H/He atmosphere white dwarf similar to other cool white dwarfs identified in recent years with significant absorption in the infrared due to collision-induced absorptions by molecular hydrogen.

## Full text

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## Figures

22 figures with captions in the complete paper: https://tomesphere.com/paper/0704.0894/full.md

## References

52 references — full list in the complete paper: https://tomesphere.com/paper/0704.0894/full.md

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Source: https://tomesphere.com/paper/0704.0894