超大質量ブラックホールからの重力波は,パルサー観測では見つかっていない
R M Shannon1, V Ravi2, L T Lentati3
1Commonwealth Science and Industrial Research Organization (CSIRO) Astronomy and Space Science, Australia Telescope National Facility, Post Office Box 76, Epping, New South Wales 1710, Australia. International Centre for Radio Astronomy Research, Curtin University, Bentley, Western Australia 6102, Australia.
まとめ
科学者たちは 超大質量ブラックホールの バイナリから重力波を 探すのに ラジオパルサーのタイミングを使いました この研究は,重力波の背景に新しい上限を設定し,現在のバイナリ進化のモデルに挑戦しました.
科学分野:
- 天体物理学
- 宇宙学
- 重力波天文学
背景:
- 超大質量ブラックホールのバイナリは 銀河の合併で形成されます
- これらのバイナリは 引力波を発して ストキャスティックな背景を作り出すと予測されています
- この背景は,電波パルサー信号の到着時間を調整できます.
研究 の 目的:
- ストキャスティック重力波の背景の特有の振幅を制限する.
- 超大質量ブラックホールの 進化モデルをテストする
主な方法:
- パークス電波望遠鏡によるミリ秒パルサーの観測を活用した.
- 重力波による変調を検出するためにパルサータイム分析を適用した.
主要な成果:
- 重力波背景の特徴的な振幅の上限を 95%の信頼性で <1.0 × 10−15 で確立した.
- この制限は,現在のモデルから予測された範囲を91%から99.7%の確率で除外しています.
結論:
- 超大質量ブラックホールの バイナリ進化の現在のモデルは 修正が必要かもしれません
- 銀河中心のバイナリ進化は 停滞するか加速するかもしれません
- 波長が短く 波長が速く 波長が短く 波長が短く 波長が短く 波長が短く 波長が短く
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