Near-Earth Objects (NEOs) can appear as faint streaks in long-exposure astronomical images. Detecting these streaks across diverse observatories requires methods that remain reliable despite differences in image quality, orientation, sky background, and noise. However, existing detectors are commonly evaluated using data from only one source, providing limited evidence of cross-source generalization. We introduce NEO-Bench, a multi-source benchmark containing 8,376 images from five astronomical-image datasets. The sources include the Hubble Space Telescope, a Stellina smart telescope, the United Arab Emirates Meteor Monitoring Network, a TETRA1 telescope using a Celestron C14 with Fastar, and the Roboflow Asteroid dataset. We converted the data to a common YOLO format, audited a sample of labels, and defined within-source and leave-one-source-out evaluation protocols. We evaluated four approaches: Hough, Radon, Gaussian PSF, and YOLO26L. Leave-one-source-out F1 decreased in 14 of 20 image-level method-source pairs and 13 of 20 IoU@0.50 localization pairs. Across the datasets categorized as medium or hard, F1 decreased in 11 of 12 image-level pairs and 9 of 12 localization pairs. These results show that cross-source performance remains inconsistent and that reliable generalization across astronomical imaging sources remains an open challenge. The benchmark, code, and data are publicly available.
STARLINC, the first ML-based framework for satellite trail removal without requiring tedious pixel-level annotation of astronomical images, is introduced, establishing STARLINC as a scalable solution for next-generation astronomical surveys.
Shingeon Kim, Hyeyoon Lee, Dain Kwon et al.· 0 citations
Source deblending is a fundamental challenge for current and forthcoming astronomical surveys, where increasing source density and image depth lead to a growing number of overlapping detections. Accurate deblending is essential for reliable measurements of source morphology and photometry, as well as for cosmological a...
M. Lepinzan, F. Tomba, E. Romelli et al.· 0 citations
GECO is a mission concept recently proposed in response to a Small National Mission call jointly issued by INAF and ASI for a fast-track space mission, including a scientific payload not in excess of 100 kg and technologies with TRL ≥5. Launch of the selected mission is anticipated around 2033. GECO proposes an unprece...
M. Feroci, R. Campana, A. De Rosa et al.· Astronomical Telescopes + In...· 0 citations
The Mid-infrared ELT Imager and Spectrograph (METIS) will provide diffraction-limited L′-band imaging of crowded stellar fields, where spatial variation in the adaptive optics point-spread function (PSF) complicates astrometry and photometry. We assess StarFinder2 using a 30 min ScopeSim observation of the Galactic Cen...
L. S. Sousa, Carlos M. Correia, K. Mužić et al.· Astronomical Telescopes + In...· 0 citations
Space-based gravitational-wave observations in the millihertz band will be signal dominated rather than noise dominated. Tens of millions of Galactic binaries overlap into a confusion foreground that contaminates instrumental-noise spectra and leaves no genuinely signal-free interval. We study instrumental-noise es...
Di Zhang, He Wang· Research in Astronomy and As...· 0 citations
The Extremely Large Telescopes (ELTs), with their large apertures and cutting-edge Multi-Conjugate Adaptive Optics (MCAO) systems, promise to deliver data sharper and deeper than even the James Webb Space Telescope (JWST) across large fields. SHARP is a concept study for a near-IR (0.95–2.45 μm) spectrograph specifical...
P. Saracco, P. Conconi, C. Arcidiacono et al.· Astronomical Telescopes + In...· 0 citations
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