Items where Author is "Lada, Charles J."

Number of items: 10.
Article
  • The Molecular Clouds of M31. (2024) Charles J. Lada, Jan Forbrich, Glen Petitpas and Sebastien Viaene
  • Tracing Dense Gas in Six Resolved GMCs of the Andromeda Galaxy. (2023) Jan Forbrich, Charles J. Lada, Jérôme Pety and Glen Petitpas
  • Simultaneous Deep Measurements of CO Isotopologues and Dust Emission in Giant Molecular Clouds in the Andromeda Galaxy. (2021) Sébastien Viaene, Jan Forbrich, Charles J. Lada, Glen Petitpas and Christopher M. Faesi
  • First Resolved Dust Continuum Measurements of Individual Giant Molecular Clouds in the Andromeda Galaxy. (2020) Jan Forbrich, Charles J. Lada, Sébastien Viaene and Glen Petitpas
  • The HP2 Survey - IV. The Pipe nebula : Effective dust temperatures in dense cores. (2018) Birgit Hasenberger, Marco Lombardi, João Alves, Jan Forbrich, Alvaro Hacar and Charles J. Lada
  • 3D shape of Orion A from Gaia DR2. (2018) Josefa E. Grossschedl, Joao Alves, Stefan Meingast, Christine Ackerl, Joana Ascenso, Herve Bouy, Andreas Burkert, Jan Forbrich, Verena Fuernkranz, Alyssa Goodman, Alvaro Hacar, Gabor Herbst-Kiss, Charles J. Lada, Irati Larreina, Kieran Leschinski, Marco Lombardi, Andre Moitinho, Daniel Mortimer and Eleonora Zari
  • VISION - Vienna survey in Orion. III. Young stellar objects in Orion A. (2018) Josefa E. Großschedl, João Alves, Paula S. Teixeira, Hervé Bouy, Jan Forbrich, Charles J. Lada, Stefan Meingast, Álvaro Hacar, Joana Ascenso, Christine Ackerl, Birgit Hasenberger, Rainer Köhler, Karolina Kubiak, Irati Larreina, Lorenz Linhardt, Marco Lombardi and Torsten Möller
  • The ALMA view of GMCs in NGC 300 : Physical Properties and Scaling Relations at 10 pc Resolution. (2018) Christopher M. Faesi, Charles J. Lada and Jan Forbrich
  • Smoke in the Pipe Nebula: dust emission and grain growth in the starless core FeSt 1-457. (2015) Jan Forbrich, Charles J. Lada, Marco Lombardi, Carlos Roman-Zuñiga and João Alves
  • Some like it cold: molecular emission and effective dust temperatures of dense cores in the Pipe Nebula. (2014) Jan Forbrich, Karin Öberg, Charles J. Lada, Marco Lombardi, Alvaro Hacar, João Alves and Jill M. Rathborne