1 citations · 1 across the 2 of their papers we have counts for
8 papers
Quantifying the Reconstructability of Astrophysical Methods with Large Language Models and Information Theory: A Case Study in Spectral Reconstruction
Hsing Wen Lin, Zong-Fu Sie
Modern astrophysical studies rely heavily on complex data analysis pipelines; however, published descriptions often lack the detail required for computational reproducibility. In t…
Probabilistic Spectral Reconstruction of Trans-Neptunian Objects from Sparse Photometry: A Framework for Taxonomy, Survey Optimization, and Outlier Detection
Hsing Wen Lin, Larissa Markwardt, Kevin J. Napier +3
Near-infrared (near-IR) spectroscopy provides critical constraints on the surface composition of trans-Neptunian objects (TNOs), but spectroscopic observations remain limited compa…
heliostack: A Novel Approach to Minor Planet Discovery
Kevin J Napier, Matthew J Holman, Hsing-Wen Lin +2
The study of faint solar system objects is a promising avenue for understanding the origin and evolution of planetary systems. However, such objects are difficult to detect in conv…
Predictions of the LSST Solar System Yield: Neptune Trojans
Joseph Murtagh, Megan E. Schwamb, Pedro H. Bernardinelli +15
The NSF-DOE Vera C. Rubin Observatory's Legacy Survey of Space and Time (LSST), beginning full operations in late 2025, will dramatically transform solar system science by vastly e…
Onset of CN Emission in 3I/ATLAS: Evidence for Strong Carbon-Chain Depletion
Luis E. Salazar Manzano, Hsing Wen Lin, Aster G. Taylor +6
Interstellar objects provide a direct window into the environmental conditions around stars other than the Sun. The recent discovery of 3I/ATLAS, a new interstellar comet, offers a…
An Efficient Shift-and-Stack Algorithm Applied to Detection Catalogs
Steven Stetzler, Mario JuriÄ, Pedro H. Bernardinelli +22
The boundary of solar system object discovery lies in detecting its faintest members. However, their discovery in detection catalogs from imaging surveys is fundamentally limited b…