VELOcities of CEpheids (VELOCE) II. Systematic Search for Spectroscopic Binary Cepheids
Shreeya S. Shetye, Giordano Viviani, Richard I. Anderson, Nami, Mowlavi, Laurent Eyer, Nancy R. Evans, and Laszlo Szabados

TL;DR
This study systematically identifies and characterizes spectroscopic binary Cepheids using high-precision velocities, revealing new binary systems and detailed orbital parameters, thereby enhancing understanding of stellar multiplicity in intermediate-mass stars.
Contribution
It provides the first large-scale, detailed orbital solutions for Cepheid binaries, including many newly discovered systems, and analyzes their orbital properties and detection challenges.
Findings
76 SB1 systems detected, 32 newly identified
30 precise and 3 tentative orbital solutions provided
Most binaries show a wide range of eccentricities and periods
Abstract
Classical Cepheids provide valuable insights into the evolution of stellar multiplicity among intermediate-mass stars. Here, we present a systematic investigation of single-lined spectroscopic binaries (SB1) based on high-precision velocities measured by the VELOcities of CEpheids (VELOCE) project. We detected 76 (29%) SB1 systems among the 258 Milky Way Cepheids in the first VELOCE data release, 32 (43%) of which were not previously known to be SB1 systems. We determined 30 precise and 3 tentative orbital solutions, 18 (53%) of which are reported for the first time. This large set of Cepheid orbits provides a detailed view of the eccentricity e and orbital period Porb distribution among evolved intermediate-mass stars, ranging from e=[0.0, 0.8] and Porb=[240, 9 000] d. Orbital motion on timescales exceeding the 11 yr VELOCE baseline was investigated using a template fitting technique…
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Taxonomy
TopicsAstronomical and nuclear sciences
