New ultracool subdwarfs identified in large-scale surveys using Virtual Observatory tools: Part I: UKIDSS LAS DR5 vs SDSS DR7
N. Lodieu (1,2) M. Espinoza Contreras (1), M. R. Zapatero Osorio (3),, E. Solano (4,5), M. Aberasturi (4,5), E. L. Mart\'in (3) ((1) IAC, Tenerife,, Spain (2) ULL, Tenerife, Spain, (3) CAB (CSIC-INTA), Madrid, Spain, (4) CAB, (INTA-CSIC), Madrid, Spain

TL;DR
This study uses large-scale survey data and Virtual Observatory tools to identify and characterize new ultracool subdwarfs, enhancing understanding of low-metallicity, low-mass stellar populations and their distribution.
Contribution
It presents a novel photometric and proper motion search method combining multiple surveys, leading to the discovery of 20 new ultracool subdwarfs and early-L subdwarfs as templates for future research.
Findings
20 new ultracool subdwarfs confirmed spectroscopically
Identification of 2 early-L subdwarfs within 100 pc
Estimated surface density of ultracool subdwarfs is 5000-5700 times lower than late-M dwarfs
Abstract
The aim of the project is to improve our knowledge on the low-mass and low-metallicity population to investigate the influence of metallicity of the stellar (and substellar) mass function. We present the results of a photometric and proper motion search aimed at unearthing ultracool subdwarfs in large-scale surveys. We employed and combined the UKIDSS LAS DR5 and the SDSS DR7 complemented with ancillary data from 2MASS, DENIS and SuperCOSMOS. The SDSS DR7 vs UKIDSS LAS DR5 search returned a total of 32 ultracool subdwarf candidates, only two being recognised as a subdwarf in the literature. Twenty-seven candidates were followed-up spectroscopically in the optical between 600 and 1000 nm. We confirmed 20 candidates as subdwarfs, extreme subdwarfs or ultra-subdwarfs with spectral types later than M5; this represents a success rate of ~60%. Among those 20 new subdwarfs, we identified 2…
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