NASAのインスタグラム(nasa) - 3月23日 06時05分


[ARTIST CONCEPT] Some 290 million years ago, a star much like the sun wandered too close to the central black hole of its galaxy. Intense tides tore the star apart, which produced an eruption of optical, ultraviolet and X-ray light that first reached Earth in 2014. Now, a team of scientists using observations from our Swift satellite have mapped out how and where these different wavelengths were produced in the event, named ASASSN-14li, as the shattered star's debris circled the black hole.

This artist's rendering shows the tidal disruption event named ASASSN-14li, where a star wandering too close to a 3-million-solar-mass black hole was torn apart. The debris gathered into an accretion disk around the black hole.
Credit: NASA's Goddard Space Flight Center

#nasa #space #nasabeyond #blackhole #swift #astronomy #galaxy #science


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