双子星系を再評価する天文研究(Astronomers take a second look at twin star systems)

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2025-05-14 イェール大学

イェール大学の研究チームは、双子星系(バイナリースター)を用いて惑星形成を比較研究する新手法を提案。特に、軌道面が真横に見える「エッジオン」配置の星系に注目し、惑星の検出や軌道の安定性、生命の可能性を評価。欧州宇宙機関のGaia DR3から約600の該当星系を特定し、軌道測定と惑星シミュレーションを実施。同一環境下の比較により、惑星形成の決定論的特性の検証が可能に。成果は『The Astrophysical Journal Letters』に掲載。

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エッジオン・バイナリーのケース: 太陽系外惑星の人口統計比較への道 The Case for Edge-on Binaries: An Avenue Toward Comparative Exoplanet Demographics

Joseph E. Hand, Konstantin Gerbig, and Malena Rice
The Astrophysical Journal Letters  Published: 2025 May 14
DOI:10.3847/2041-8213/adce04

双子星系を再評価する天文研究(Astronomers take a second look at twin star systems)

Abstract

Most Sun-like and higher-mass stars reside in systems that include one or more gravitationally bound stellar companions. These systems offer an important probe of planet formation in the most common stellar systems, while also providing key insights into how gravitational perturbations and irradiation differences from a companion star alter the outcomes of planet formation. Recent dynamical clues have begun to emerge that reveal systematic, nonrandom structure in the configurations of many planet-hosting binary systems: in close- to moderate-separation (s < 800 au) binary star systems, the orbits of exoplanets around individual stellar components are preferentially aligned with the orbital plane of their host stellar binary. In this work, we flip this narrative and search for nearby, edge-on binary star systems that, due to this preferential alignment, are top candidates for radial velocity and transiting exoplanet searches. We present a sample of 591 moderate-separation, relatively bright (G < 14) Gaia-resolved binary star systems in likely near-edge-on configurations. Using a simulated population of exoplanets drawn from transit survey occurrence rate constraints, we provide an overview of the expected planet yields from a targeted search in these systems. We describe the opportunities for comparative exoplanet demographics in the case that both stars can be inferred to host edge-on planetary systems—a configuration toward which the presented sample may be biased, given recent observations of orbit–orbit alignment in exoplanet-hosting binary systems.

1701物理及び化学
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