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Not Their First Rodeo: Gravitational Wave Detectors Spot Merging Black Holes That Have Merged Before The gravitational wave events GW241011 and GW241110 provide strong evidence for the growth of black holes through successive mergers.

Spinning into the merging binary black hole family tree

astrobites.org/2025/11/21/g... by
@neevshah101.bsky.social

@astrobites.bsky.social report on the potential implications of our discovery of #GW241011 and #GW241110

🔭☄️🧪⚛️

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Not Their First Rodeo: Gravitational Wave Detectors Spot Merging Black Holes That Have Merged Before The gravitational wave events GW241011 and GW241110 provide strong evidence for the growth of black holes through successive mergers.

Not Their First Rodeo: Gravitational Wave Detectors Spot Merging Black Holes That Have Merged Before

aasnova.org/2025/10/28/n... by Kerry Hensley

@aasnova.org report on our discovery of #GW241011 and #GW241110

🔭☄️🧪⚛️

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Screenshot of the arXiv page

GW241011 and GW241110: Exploring Binary Formation and Fundamental Physics with Asymmetric, High-Spin Black Hole Coalescence

We report the observation of gravitational waves from two binary black hole coalescences during the fourth observing run of the LIGO--Virgo--KAGRA detector network, GW241011 and GW241110. The sources of these two signals are characterized by rapid and precisely measured primary spins, non-negligible spin--orbit misalignment, and unequal mass ratios between their constituent black holes. These properties are characteristic of binaries in which the more massive object was itself formed from a previous binary black hole merger, and suggest that the sources of GW241011 and GW241110 may have formed in dense stellar environments in which repeated mergers can take place. As the third loudest gravitational-wave event published to date, with a median network signal-to-noise ratio of 36.0, GW241011 furthermore yields stringent constraints on the Kerr nature of black holes, the multipolar structure of gravitational-wave generation, and the existence of ultralight bosons within the mass range 10−13--10−12 eV.

arXiv:2510.26931 [astro-ph.HE]

Screenshot of the arXiv page GW241011 and GW241110: Exploring Binary Formation and Fundamental Physics with Asymmetric, High-Spin Black Hole Coalescence We report the observation of gravitational waves from two binary black hole coalescences during the fourth observing run of the LIGO--Virgo--KAGRA detector network, GW241011 and GW241110. The sources of these two signals are characterized by rapid and precisely measured primary spins, non-negligible spin--orbit misalignment, and unequal mass ratios between their constituent black holes. These properties are characteristic of binaries in which the more massive object was itself formed from a previous binary black hole merger, and suggest that the sources of GW241011 and GW241110 may have formed in dense stellar environments in which repeated mergers can take place. As the third loudest gravitational-wave event published to date, with a median network signal-to-noise ratio of 36.0, GW241011 furthermore yields stringent constraints on the Kerr nature of black holes, the multipolar structure of gravitational-wave generation, and the existence of ultralight bosons within the mass range 10−13--10−12 eV. arXiv:2510.26931 [astro-ph.HE]

Our #GW241011 and #GW241110 discovery paper is now on the arXiv

arxiv.org/abs/2510.26931

If you would like to catch up on the highlights, checkout out our Science Summary

ligo.org/science-summ...

🔭☄️⚛️🧪

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Fascinating detections from LIGO-Virgo-KAGRA!

#GW241011 & #GW241110 showcase unequal-mass, rapidly spinning black hole mergers—potentially hierarchical, with the massive primaries possibly "second-generation" relics from prior fusions in dense clusters.

#O4IsHere 🔭🧪⚛️ #science

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The gravitational wave signals: the amplitude of the data over time in a combination of the LIGO Hanford, LIGO Livingston and Virgo detectors for GW241011 (left; Hanford and Virgo) and GW241110 (right; Hanford and Livingston). The merger time of the events is at time = 0.

The gravitational wave signals: the amplitude of the data over time in a combination of the LIGO Hanford, LIGO Livingston and Virgo detectors for GW241011 (left; Hanford and Virgo) and GW241110 (right; Hanford and Livingston). The merger time of the events is at time = 0.

Data for #GW241011 and #GW241110 are available to analyze from the Gravitaitonal Wave Open Science Center

doi.org/10.7935/3drz...
doi.org/10.7935/46xh...

You can find lots of tutorials there too!

gwosc.org/tutorials/

#OpenScience #OpenData 🧪🔭☄️⚛️

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Plots showing how the new detection compare to our previous observations. The top panel shows all the events from the LVK’s most recently published catalog, GWTC-4.0, and our two new events GW241011 and GW241110 ordered by the primary spin projected in the direction of the spin of the orbital plane — in other words, how aligned the primary black hole’s spin direction is with the binary system’s orbit direction. Values greater than zero means the black hole is aligned with the spin of the orbit, whereas less than zero means the system is anti-aligned. The bottom panel shows the distribution of primary mass (the mass of the larger black hole) in solar masses and the mass ratio of the black hole pair for all events from GWTC-4.0 including our new events.

Plots showing how the new detection compare to our previous observations. The top panel shows all the events from the LVK’s most recently published catalog, GWTC-4.0, and our two new events GW241011 and GW241110 ordered by the primary spin projected in the direction of the spin of the orbital plane — in other words, how aligned the primary black hole’s spin direction is with the binary system’s orbit direction. Values greater than zero means the black hole is aligned with the spin of the orbit, whereas less than zero means the system is anti-aligned. The bottom panel shows the distribution of primary mass (the mass of the larger black hole) in solar masses and the mass ratio of the black hole pair for all events from GWTC-4.0 including our new events.

Our new paper on our LIGO @egovirgo.bsky.social KAGRA discovery of #GW241011 and #GW241110 is now published

doi.org/10.3847/2041...

These observations can tell us about the astrophysics of binary formation and test fundamental physics

#O4IsHere #GW10Years

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Infographic about GW241011 and GW241110

GW241011's source contained black holes about 13 and 8 times the mass of our Sun. The spin of the bigger black hole is high and bear aligned with the orbit.

GW241110's source contained black holes about 17 and 8 times the mass of our Sun. The spin of the larger black hole is high and near anti-aligned with the orbit.

Credit: Shanika Galaudage/Northwestern University/Adler Planetarium

Infographic about GW241011 and GW241110 GW241011's source contained black holes about 13 and 8 times the mass of our Sun. The spin of the bigger black hole is high and bear aligned with the orbit. GW241110's source contained black holes about 17 and 8 times the mass of our Sun. The spin of the larger black hole is high and near anti-aligned with the orbit. Credit: Shanika Galaudage/Northwestern University/Adler Planetarium

We are pleased to announce our discovery of #GW241011 and #GW241110

Both come from binary black holes where one black hole is much larger than the other. The larger black holes have large spin. Could these black holes have formed in a previous merger?

ligo.org/science-summ...

#O4IsHere 🔭🧪⚛️☄️

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宇宙級併吞事業,新重力波事件揭示黑洞經歷二次合併 * * 2024 年底,LIGO-Virgo-KAGRA 合作計畫探測到 2 場重力波事件,皆由雙黑洞碰撞並融合成新生黑洞。然而分析結果驚訝發現,這些互相碰撞的黑洞也曾是其他黑洞融合後產物,如今它們遇上其他黑洞對象,再次碰撞並融合成另一個新黑洞。 第一個重力波事件稱為 GW241011,距離地球約 7 億光年,由 2 個質量分別約太陽 20 倍與 6 倍的黑洞碰撞合併。據測量,GW241011 事件內較大黑洞是迄今觀測旋轉速度最快的黑洞之一。 一個月後,LIGO-Virgo-KAGRA 再於 2.4 億光年外探測到 GW241110 重力波事件,由質量約太陽 17 倍和 8 倍的黑洞合併引起。 **▲ 2024 年 10 月、11 月探測到 GW241011、GW241110 重力波事件。(Source:內華達大學拉斯維加斯分校)** 迄今我們已透過重力波觀測約 300 次黑洞合併事件,當中多數黑洞都沿與公轉軌道相同的方向旋轉,然而科學家發現 GW241110 事件中的較大黑洞,自旋方向與公轉軌道方向相反,在所有同類事件尚屬首次。 這兩場雙黑洞碰撞事件都有一個黑洞質量比另一個黑洞大得多且快速旋轉,合併後較大黑洞自旋方向與軌道方向相反也成為「二代黑洞」誘人證據,說明這些黑洞過去經由另 2 個母黑洞合併形成。 天文學家解釋,黑洞透過一次又一次碰撞合併、增加質量的過程稱為「分級合併」,新研究表明星團等稠密區域能形成小型黑洞族群,並藉一次又一次相遇合併催生出更大型黑洞。 新論文發表在《天文物理期刊通訊》(The Astrophysical Journal Letters)。 * Pair of distinct black hole mergers sheds new light on their formation and evolution * Pair of black hole mergers sheds new light on their formation, evolution * Scientists hear 2 newborn black holes ‘crying’ through ripples in spacetime — and one had a birth unlike anything seen before * Study: Pair of Distinct Black Hole Mergers Reveals Clues on How They Form and Evolve (首圖來源:斯威本理工大學/Carl Knox/內華達大學拉斯維加斯分校) 文章看完覺得有幫助,何不給我們一個鼓勵 請我們喝杯咖啡 ## 想請我們喝幾杯咖啡? ### 每杯咖啡 65 元 x 1 x 3 x 5 x 您的咖啡贊助將是讓我們持續走下去的動力 **總金額共新臺幣 0 元** 《關於請喝咖啡的 Q & A》 ### 留給我們的話 取消 確認 從這裡可透過《Google 新聞》追蹤 TechNews * * * 科技新知,時時更新 科技新報粉絲團 加入好友 訂閱免費電子報 * * * 關鍵字: GW241011 , GW241110 , 重力波 , 黑洞合併

宇宙級併吞事業,新重力波事件揭示黑洞經歷二次合併 2024 年底,LIGO-Virgo-KAGRA 合作計畫探測到 2 場重力波事件,皆由雙黑洞碰撞並融合成新生 […]

#天文 #自然科學 #航太科技 #GW241011 #GW241110 #重力波 #黑洞合併

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