Thai University RankingsRESEARCH RADAR
← Back to research database
งานใหม่ที่น่าจับตา

The PAU Survey: Uncovering the connection between intrinsic and observed galaxy properties using symbolic regression

IMPACT SIGNAL70/100
01

Information from the abstract

Abstract Estimating stellar masses for billions of galaxies in upcoming surveys requires methods that are both accurate and computationally efficient. We present a new approach using symbolic regression trained on a simulation to derive simple, explicit mathematical expressions that estimate galaxy stellar masses from basic observables: photometry and photometric redshift. Using a mock catalogue from the GALFORM semi-analytical model that reproduces the Physics of the Accelerating Universe Survey (PAUS), we show that a linear combination of just four observables-minimally processed u- and i-band magnitudes, observed (g − r) colour, and photometric redshift-can recover stellar masses with accuracy comparable to traditional spectral energy distribution (SED) fitting, but with negligible computational cost. Our expressions can be evaluated instantaneously for millions of galaxies, making them ideal for next-generation surveys like LSST and Euclid. When observational errors are included, symbolic regression achieves a similar accuracy to deep neural networks while adding physical interpretability. Validation against CIGALE SED fitting on PAUS data shows agreement within 0.13 dex for galaxies with M* > 108 h−1 M⊙ which is comparable to the error on stellar mass estimates from multi-band spectral energy distribution fitting. We demonstrate that the stellar mass function can be recovered at z < 0.5, though with distortions at the extremes: the high-mass end is overestimated by a factor of ~3 at 1011.5 h−1 M⊙ due to the scatter introduced in the regression estimate. Our approach offers a fast, transparent alternative to traditional methods without sacrificing accuracy for the bulk of the galaxy population.

02

Why this record is monitored

This record has an Impact Signal of 70/100 based on recency, source, collaboration, and bibliographic signals. It prioritizes monitoring and is not a judgment of research quality.

Related topics: Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae

03

Thai researcher and institutional participation

Suttikoon Koonkor · National Astronomical Research Institute of Thailand

04

Data limitations

This page is a bibliographic record based on abstract-level information, not a full analysis or quality assessment. Verify the DOI and original article before citation.