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Scientists unveil first spectral map of a black hole's event horizon

العالم
CGTN EN
2026/07/21 - 14:25 501 مشاهدة
تحليل ذكي | AI Editorial Analysis

هذا الخبر من CGTN EN. خبر يقدم أدوات ذكاء اصطناعي للتلخيص والترجمة والاستماع.

This handout photograph released by the European Southern Observatory on March 24, 2021, shows the polarized view of the black hole in the Messier 87 (M87) galaxy, with lines marking the orientation of polarization, which is related to the magnetic field around the shadow of the black hole by the Event Horizon Telescope (EHT) collaboration. /VCG

A team of Chinese and international researchers has produced the world's first spatially resolved spectral index map of a black hole at the scale of its event horizon, offering new insights into the extreme physical environment surrounding black holes.

The research, published on Monday in The Astrophysical Journal Letters, was led by researchers from the Shanghai Astronomical Observatory under the Chinese Academy of Sciences in collaboration with international partners.

The team analyzed observations of the supermassive black hole M87 using data collected in 2018 by the Event Horizon Telescope (EHT) and the Global Millimeter VLBI Array. By combining images captured at wavelengths of 1.3 millimeters and 3.5 millimeters, the researchers conducted the first dual-frequency spectral study at the event-horizon scale.

The study produced the first spatially resolved map of the black hole's spectral index, which describes how the brightness of radiation changes across different frequencies. Researchers likened the achievement to conducting a high-precision "spectral health check" of a black hole.

A spatially resolved spectral-index map of the M87 black hole on event-horizon scales. /CAS

The results show that the radiation properties around the black hole change significantly with distance from its center. Near the event horizon, the spectral index is positive, indicating that radiation remains strongly affected by synchrotron self-absorption. Farther away, the spectral index gradually decreases and becomes negative, suggesting the radiation transitions to an optically thin state.

The transition occurs about 30 microarcseconds from the black hole's center, matching the size of the ring structure observed at the 3.5-millimeter wavelength. The finding suggests the ring is not only a visible feature of the black hole image but also reflects the radiation state of plasma near the event horizon.

Researchers said future observations at additional frequencies could enable more precise measurements of plasma conditions around black holes and help track the evolution of accretion flows and jets over time, advancing black hole studies from static imaging to dynamic physical diagnostics.

المصدر: CGTN EN | Source: CGTN EN

ملاحظة تحريرية | Editorial Note: نُشر هذا المقال في الأصل بواسطة CGTN EN. خبر (Khabr) هي منصة إعلامية أردنية مرخّصة تعمل بالذكاء الاصطناعي. نضيف قيمة تحريرية من خلال: تحليل ذكي للأخبار، ملخصات تلقائية، رواية صوتية بالذكاء الاصطناعي، ترجمة متعددة اللغات، وتدقيق الحقائق. هدفنا جعل الأخبار أكثر وضوحاً وسهولةً للقارئ العربي.

This article was originally published by CGTN EN. Khabr is a licensed Jordanian AI-powered news platform (Registration #82086). We add editorial value through: AI-powered news analysis, automated summaries, AI audio narration, multi-language translation (Arabic, English, French, Turkish), and AI fact-checking. Our mission is to make news more accessible and understandable for Arabic-speaking audiences worldwide.

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المزيد عن العالم | More on World

هذا الخبر ضمن تغطية خبر لقسم العالم. نقدّم لك تحليلات ذكية وملخصات يومية لأهم الأخبار من مصادر موثوقة متعددة. المصدر: CGTN EN. يوجد 6 مقالات مرتبطة بهذا الموضوع.

This article is part of Khabr's coverage of World. We provide AI-powered analysis, summaries, and multi-source aggregation to keep you informed. Source: CGTN EN.

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