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The local spiral structure of the Milky Way. | LitMetric

AI Article Synopsis

  • Astronomers have recently made significant advancements in measuring distances to high-mass star-forming regions in the Milky Way, which help in understanding its spiral structure.
  • New observations indicate that the Local Arm of the Milky Way is larger than previously believed and shares similar characteristics, like pitch angle and star formation rate, with major spiral arms such as Sagittarius and Perseus.
  • The study also highlights a spur connecting the Local and Sagittarius arms and reveals that sources in the Local Arm significantly cluster, particularly in the Cygnus region, affecting their observable properties.

Article Abstract

The nature of the spiral structure of the Milky Way has long been debated. Only in the last decade have astronomers been able to accurately measure distances to a substantial number of high-mass star-forming regions, the classic tracers of spiral structure in galaxies. We report distance measurements at radio wavelengths using the Very Long Baseline Array for eight regions of massive star formation near the Local spiral arm of the Milky Way. Combined with previous measurements, these observations reveal that the Local Arm is larger than previously thought, and both its pitch angle and star formation rate are comparable to those of the Galaxy's major spiral arms, such as Sagittarius and Perseus. Toward the constellation Cygnus, sources in the Local Arm extend for a great distance along our line of sight and roughly along the solar orbit. Because of this orientation, these sources cluster both on the sky and in velocity to form the complex and long enigmatic Cygnus X region. We also identify a spur that branches between the Local and Sagittarius spiral arms.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5040477PMC
http://dx.doi.org/10.1126/sciadv.1600878DOI Listing

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