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Sahin Torlakcik

Publications and source records attributed to Sahin Torlakcik.

3 recordsLinked to original sources

An unresolved extreme warm infrared excess toward a nearby low-mass star

Gaia DR3 2981818948336660224 is a nearby low-mass star with a substantial warm mid-infrared excess. Identified in a Gaia-2MASS-WISE search, it lies at approximately 127 pc and has an AllWISE W3 signal-to-noise ratio of 33.1. We recover the emission in all 16 available cryogenic exposures over 1.26 d; removing any one exposure leaves the signal intact. The W3 emission is centred close to the propagated stellar position, and the known neighbour 6.1 arcsec away fails to reproduce its morphology. Nominal scene fits place 97-98 per cent of the W3 flux at the target position. This provides strong spatial support for association, although template uncertainty and a nearly coincident hidden source prevent a definitive decomposition. The excess can be described by a roughly 300-350 K component with L_IR/L_star ~ 0.022, assuming stellar association and retaining the weaker W4 detection. If produced by circumstellar dust, it falls in the extreme warm-debris regime around a dwarf with no established evidence of youth. Its origin remains unresolved. The repeatable excess and close spatial association make this a useful target for subarcsecond MIR imaging and spectroscopy to test the warm-dust interpretation.

astro-ph.SR

Stellar J-Harvesting: a novel angular momentum technosignature and first search in the Kepler field

We introduce Stellar J-Harvesting (SJH), a technosignature in which an engineered system extracts rotational angular momentum from a star. Unlike a classical Dyson sphere, such a system need not produce a detectable mid-infrared excess; its clearest signature would be a star rotating more slowly than comparable peers. We derive the energy-period relation for this effect, outline several possible coupling channels, and apply a population-relative slow-rotator search to Kepler stars using colour-gravity bins. After eight false-positive filters, the clean sample contains 6,725 FGK main-sequence stars. We find two >4 sigma slow rotators, but Gaia DR3 indicators and WISE imaging point to more ordinary explanations, including unresolved binaries and low metallicity. We therefore make no detection claim and place a conservative pilot upper limit on the occurrence of strong SJH-like signals, f_SJH < 4.5e-4. The main result is a search framework: angular-momentum technosignatures are testable with existing stellar-rotation catalogues, and the strongest outliers define concrete targets for spectroscopic, imaging, and radio follow-up.

astro-ph.SR

Where Not to Look: A Parametric Avoidance Model for SETI Target Selection

We present a simple, rule-based filter for SETI target selection that flags stars unlikely to host complex life and produces an audit-ready exclusion catalog. Using seven stellar parameters, including age, metallicity, and multiplicity, the model excludes roughly half of a 1.74 million-star Gaia DR3 sample, retaining 777,835 high-priority targets, mainly G and K dwarfs. Age and metallicity dominate the rejections. Importantly, using Gaia's age upper bounds instead of point estimates saves 355,086 stars from exclusion. A comparison of empirical and synthetic proxies shows that while the overall exclusion rate is robust, individual target assignments change significantly; for instance, the commonly used RUWE indicator flags 2.7x more binaries than Gaia's own non-single-star flag. Cross-matching with the Breakthrough Listen target list reveals a 56.5% exclusion rate, highlighting the complementary nature of habitability-driven and proximity-driven surveys. The catalog, pipeline, and a generalized community tool are publicly available.

astro-ph.IM