English

Characterizing the GD-1 Stream with DESI DR2 Data: Thin Stream and Hot Cocoon

Astrophysics of Galaxies 2026-04-24 v1

Abstract

GD-1 is among the longest, coldest stellar streams in the Milky Way, making it an ideal target for probing dark matter substructure through dynamical heating. We present a catalog of 608 spectroscopically confirmed GD-1 members from the first three years of Dark Energy Spectroscopic Instrument (DESI) observations. This constitutes the largest homogeneous spectroscopic sample of GD-1, doubling the number of members previously available only through heterogeneous compilations combining multiple surveys with different systematics. Using these data, we derive updated stream tracks in sky position, proper motion, and radial velocity that extend over 100100^\circ of the stream. We apply a Gaussian mixture model to decompose the stream into a dynamically cold thin component (σV=2.49±0.28\sigma_V = 2.49\pm 0.28 km s1^{-1}, width =0.23±0.01= 0.23\pm0.01^\circ) and a kinematically hot cocoon (σV=6.13±0.75\sigma_V = 6.13\pm0.75 km s1^{-1}, width =2.18±0.17= 2.18\pm0.17^\circ). The cocoon contains 30%\sim30\% of members and its velocity dispersion is consistent with 11\sim11 Gyr of heating by cold dark matter subhalos. We also detect a large proper motion dispersion (41.36±4.9841.36\pm4.98 km s1^{-1}) along the stream direction in the cocoon component. This feature indicates a significant line-of-sight distance spread in the cocoon, and its origin will be further explored in a forthcoming paper. These measurements demonstrate the power of DESI spectroscopy for characterizing the multi-component phase-space structure of stellar streams and constraining small-scale dark matter substructure.

Keywords

Cite

@article{arxiv.2604.20958,
  title  = {Characterizing the GD-1 Stream with DESI DR2 Data: Thin Stream and Hot Cocoon},
  author = {Emma Jarvis and Ting S. Li and Sergey E. Koposov and Raymond G. Carlberg and Monica Valluri and Nasser Mohammed and J. Aguilar and S. Ahlen and Carlos Allende Prieto and Leandro Beraldo e Silva and D. Bianchi and D. Brooks and Amanda Byström and T. Claybaugh and A. P. Cooper and A. Cuceu and A. de la Macorra and Arjun Dey and Biprateep Dey and P. Doel and J. E. Forero-Romero and E. Gaztañaga and Oleg Y. Gnedin and Satya Gontcho A Gontcho and G. Gutierrez and K. Honscheid and R. Joyce and R. Kehoe and T. Kisner and Namitha Kizhuprakkat and A. Kremin and Mika Lambert and M. Landriau and L. Le Guillou and Gustavo E. Medina and A. Meisner and R. Miquel and S. Nadathur and Joan Najita and N. Palanque-Delabrouille and W. J. Percival and F. Prada and I. Pérez-Ràfols and Tian Qiu and Alexander H. Riley and Constance M. Rockosi and G. Rossi and E. Sanchez and Nathan Sandford and E. F. Schlafly and D. Schlegel and J. Silber and D. Sprayberry and G. Tarlé and B. A. Weaver and R. Zhou and H. Zou},
  journal= {arXiv preprint arXiv:2604.20958},
  year   = {2026}
}

Comments

29 pages, 15 figures, 8 tables, submitted to ApJ, comments are welcome, associated data for all Tables is available on zenodo (https://doi.org/10.5281/zenodo.19258456) including a jupyter notebook tutorial, see paper for more details

R2 v1 2026-07-01T12:31:12.525Z