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レンズ画像の赤色超巨大超新星の赤色シフト3での衝撃冷却
Wenlei Chen1, Patrick L Kelly2, Masamune Oguri3,4,5
1School of Physics and Astronomy, University of Minnesota, Minneapolis, MN, USA. chen6339@umn.edu.
Nature
|November 9, 2022
まとめ
重力レンズを用いて超新星の前身の半径を測定しました この巨大な星は おそらく赤い超巨大で 初期の宇宙の星群の洞察を 提供しています
科学分野:
- 天文学と天体物理学
- 宇宙の進化
- 恒星物理学
背景:
- 核崩壊超新星は 衝撃波が恒星の表面に到達すると 急速に明るくなります
- 初期の光の曲線は 祖先の大きさに依存し 恒星の進化を理解するために重要です
- 遠方の超新星を観測することは,限られたデータと紫外線観測により困難です.
研究 の 目的:
- 重力レンズを用いて遠い超新星の原始半径を測定する.
- 巨大な恒星群を調査する
- 巨大な恒星の最終的な進化状態を 制限するために
主な方法:
- ハッブル宇宙望遠鏡の 紫外線と光学光を 分析しています
- レッドシフト z ≈ 3 の3つの重力レンズ画像を使用します.
- 爆発から5.8時間±3.1時間以内に初期の光線を測定する.
主要な成果:
- 爆発前の半径を太陽の半径に制限します.
- 半径は赤い超巨大祖先と一致する
- 星周物質は光の曲線を説明できるが 不可能であると考えられている.
結論:
- 重力レンズにより 遠くにある超新星とその祖先を研究できます
- この発見は この巨大な恒星の 赤い超巨大モデルを支持します
- この技術は初期の宇宙の星群を 研究する道を開きます
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