台灣親子觀星會

台灣親子觀星會 親子觀星會宗旨: 散播天文種子,分享觀星樂趣;倡導光害防制,保護美麗星空 親子觀星會首頁:http://familystar.org.tw

14/08/2026

A total eclipse of the sunflower field. ☀️🌑🌻

The Moon passed between the Sun and Earth on Aug. 12, 2026, creating a total solar eclipse visible across parts of Greenland, Iceland, northern Russia, the Atlantic Ocean, Spain, and Portugal.

This composite image captures the eclipse's progression over a field of sunflowers in San Millan de los Caballeros, Spain. During totality, the Moon completely blocked out the Sun, briefly revealing the Sun's outer atmosphere, or corona.

https://youtu.be/fwgChZlvyYM?si=kdncTtGKw2nnJvJC
14/08/2026

https://youtu.be/fwgChZlvyYM?si=kdncTtGKw2nnJvJC

最近科學家驗證膠球存在的新聞火了。到底什麼是「膠球」?它是怎麼產生的?科學家為何斷定它就是膠球?為什麼這次的研究這麼被關注?這些問題這...

https://technews.tw/2026/08/14/solar-eclipse-2026/
14/08/2026

https://technews.tw/2026/08/14/solar-eclipse-2026/

12 日登場的 2026 年日全食的太空影像陸續公開,以全新角度觀看這場天文奇景。從地面看,日全食只在格陵蘭、冰島、西班牙北部與葡萄牙小部分地區形成狹窄的全食帶;但從軌道回望,月球投下的黑影卻像快速掠過地球表面的...

SN 2026gzf  寬譜線Ic型超新星_瀕死恆星爆炸 天文學家罕見完整記錄畫面曝
14/08/2026

SN 2026gzf 寬譜線Ic型超新星_瀕死恆星爆炸 天文學家罕見完整記錄畫面曝

美國兩個研究團隊把握難得的機會,從一顆演化到生命晚期的龐大恆星,出現第一個爆炸訊號開始,一路觀測其死亡過程,發現大質量恆星的死亡方式,比天文學家過去所知更多,而且這場超新星爆炸並未出現伽瑪射線暴。路透...

1E 1547.0–5408(SGR J1550−5418) 磁星真空雙折射(vacuum birefringence) _ 1930 年代,海森堡(Werner Heisenberg)與 Euler(Hans Euler)等人的理論工作就...
14/08/2026

1E 1547.0–5408(SGR J1550−5418) 磁星真空雙折射(vacuum birefringence) _ 1930 年代,海森堡(Werner Heisenberg)與 Euler(Hans Euler)等人的理論工作就預測了強電磁場下量子真空會出現非線性效應。後來 Schwinger 的量子電動力學進一步建立了更完整的理論框架 , 在經典電磁學中,真空的介電常數與磁導率是固定的,因此光在真空中不應該因為「周圍沒有物質」而產生普通晶體那樣的雙折射。但是在量子電動力學(QED)裡,情況不同。強磁場會使量子真空的電磁場漲落產生可觀測的效應,使真空對不同偏振方向的光呈現不同的有效折射率。

Magnetars are now known to be among the most strongly polarized celestial sources in X-rays. Here we report on the $500\,\mathrm{ks}$ observation of the magnetar 1E 1547.0-5408 performed by the Imaging X-ray Polarimetry Explorer (IXPE) in March 2025. The IXPE spectrum is well reproduced by a single....

黑洞不只毀滅一切,吸積盤外圍可能養出比地球大千倍的超級塵埃行星_新墨西哥州立大學天文學副教授 Wladimir Lyra 團隊透過電腦模擬發現,活躍銀河核(AGN)周圍吸積盤(尤其是外圍區域)的溫度、密度、氣體狀態,竟與圍繞年輕恆星周圍的原...
14/08/2026

黑洞不只毀滅一切,吸積盤外圍可能養出比地球大千倍的超級塵埃行星_新墨西哥州立大學天文學副教授 Wladimir Lyra 團隊透過電腦模擬發現,活躍銀河核(AGN)周圍吸積盤(尤其是外圍區域)的溫度、密度、氣體狀態,竟與圍繞年輕恆星周圍的原行星盤(protoplanetary disk) 非常相似,塵埃在該環境下逐漸聚集碰撞,最終可形成質量高達地球 1,000 倍的純塵埃行星。

有些行星質量還巨大到逼近恆星,暗示該區域可能存在一種全新恆星誕生機制:隨著行星內部壓力及溫度飆高,最後直接點火引發核融合,硬生生從行星變成恆星,有別於傳統恆星因氣體雲局部重力不穩定而塌縮形成的路徑。

這些在黑洞周圍形成的超大質量行星/原恆星,還有機會進一步演化成質量約太陽數百~數千倍的中等質量黑洞(Intermediate-mass black holes,IMBHs),這些黑洞若往星系中心遷移就可能與其他黑洞合併,強調天文觀測史上極少發現的中等質量黑洞,實際上可能直接由活躍星系核的吸積盤養出再與其他黑洞融合,這種演化途徑比傳統恆星塌縮更快、更有效率。

不過我們怎麼證明黑洞吸積盤外圍區域可能孕育超級塵埃行星?

第一個方法是微重力透鏡效應,當這些巨型行星經過明亮黑洞吸積盤前方,會像放大鏡一樣微微扭曲活躍星系核光芒,產生獨特亮度變化曲線,NASA 即將發射的羅曼太空望遠鏡視野比哈伯望遠鏡大 200 倍,將是尋找這些特殊變化的最佳神探。

第二個方法為探測黑洞「合體」的重力波。歐洲 LISA 太空重力波天文台(雷射干涉太空天線) 能探測極低頻重力波訊號,這種波來自質量為太陽數百~數千倍的黑洞合併事件,也正是黑洞吸積盤外圍預期產生的黑洞類型。

宇宙的創造力如此不可思議,黑洞周圍領域往往象徵死亡與混亂,但在黑洞吸積盤邊緣,可能存在從塵埃到巨行星、恆星、中等黑洞的一系列誕生過程。

我們總把黑洞想成「宇宙吸塵器」,靠近它的一切都被撕裂吞噬,但新研究反轉想像,指出超大質量黑洞外圍其實是極肥沃育星所,能催生出比木星大、純粹由塵埃組成的超級行星。 新墨西哥州立大學天文學副教授 Wladimir Lyra .....

13/08/2026

NASA's Chandra Sees Black Hole Jet Stumble Into Something in the dark

https://chandra.harvard.edu/photo/2024/cena/

A jet moving near the speed of light from a giant black hole is striking an object astronomers cannot identify.

The Centaurus A galaxy is well known for having spectacular jets that stretch out across the length on the entire galaxy.

Despite being studied for decades, only an ultra-deep image from NASA’s Chandra X-ray Observatory unearthed an unusual feature.

This V-shape of X-rays indicates the jet is hitting something along its path, causing the unusual structure.

Even matter ejected by black holes can run into objects in the dark. Using NASA’s Chandra X-ray Observatory, astronomers have found an unusual mark from a giant black hole’s powerful jet striking an unidentified object in its path.

The discovery was made in a galaxy called Centaurus A (Cen A), located about 12 million light-years from Earth. Astronomers have long studied Cen A because it has a supermassive black hole in its center sending out spectacular jets that stretch out across the entire galaxy. The black hole launches this jet of high-energy particles not from inside the black hole, but from intense gravitational and magnetic fields around it.

The image shows low-energy X-rays seen by Chandra represented in pink, medium-energy X-rays in purple, and the highest-energy X-rays in blue.

In this latest study, researchers determined that the jet is — at least in certain spots — moving at close to the speed of light. Using the deepest X-ray image ever made of Cen A, they also found a patch of V-shaped emission connected to a bright source of X-rays, something that had not been seen before in this galaxy.

Called C4, this source is located close to the path of the jet from the supermassive black hole and is highlighted in the inset. The arms of the “V” are at least about 700 light-years long. For context, the nearest star to Earth is about 4 light-years away.
A labeled image of C4 in the Centaurus A galaxy.
Source C4 in the Centaurus A Galaxy. (Credit: NASA/CXC/SAO/D. Bogensberger et al.; Image Processing: NASA/CXC/SAO/N. Wolk)

While the researchers have ideas about what is happening, the identity of the object being blasted is a mystery because it is too distant for its details to be seen, even in images from the current most powerful telescopes.

The incognito object being rammed may be a massive star, either by itself or with a companion star. The X-rays from C4 could be caused by the collision between the particles in the jet and the gas in a wind blowing away from the star. This collision can generate turbulence, causing a rise in the density of the gas in the jet. This, in turn, ignites the X-ray emission seen with Chandra.

The shape of the “V,” however, is not completely understood. The stream of X-rays trailing behind the source in the bottom arm of the “V” is roughly parallel to the jet, matching the picture of turbulence causing enhanced X-ray emission behind an obstacle in the path of the jet. The other arm of the “V” is harder to explain because it has a large angle to the jet, and astronomers are unsure what could explain that.

This is not the first time astronomers have seen a black hole jet running into other objects in Cen A. There are several other examples where a jet appears to be striking objects — possibly massive stars or gas clouds. However, C4 stands out from these by having the V-shape in X-rays, while other obstacles in the jet’s path produce elliptical blobs in the X-ray image. Chandra is the only X-ray observatory capable of seeing this feature. Astronomers are trying to determine why C4 has this different post-contact appearance, but it could be related to the type of object that the jet is striking or how directly the jet is striking it.

A paper describing these results appears in a recent issue of The Astrophysical Journal. The authors of the study are David Bogensberger (University of Michigan), Jon M. Miller (University of Michigan), Richard Mushotsky (University of Maryland), Niel Brandt (Penn State University), Elias Kammoun (University of Toulouse, France), Abderahmen Zogbhi (University of Maryland), and Ehud Behar (Israel Institute of Technology).

NASA's Marshall Space Flight Center in Huntsville, Alabama, manages the Chandra program. The Smithsonian Astrophysical Observatory's Chandra X-ray Center controls science operations from Cambridge, Massachusetts, and flight operations from Burlington, Massachusetts.

J0148-4214  韋伯望遠鏡直擊早期宇宙,單一星系竟塞了三個超大質量黑洞
13/08/2026

J0148-4214 韋伯望遠鏡直擊早期宇宙,單一星系竟塞了三個超大質量黑洞

大爆炸後僅 12 億年,科學家首次在單一星系中同時發現 3 個活躍超大質量黑洞,暗示早期宇宙的黑洞成長方式比想像更加瘋狂。 過去我們認為早期宇宙物質瀰漫鬆散,需累積時間吸積大量物質的超大質量黑洞發展緩慢,但韋伯....

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