1 00:00:00,667 --> 00:00:03,003 NASA's Fermi Gamma-ray Space Telescope 2 00:00:03,003 --> 00:00:06,006 has observed something it's never seen before. 3 00:00:06,106 --> 00:00:09,109 A discovery that helps explain an astronomical 4 00:00:09,209 --> 00:00:11,044 mystery. 5 00:00:12,145 --> 00:00:14,948 Supernovae are exploding stars. 6 00:00:14,948 --> 00:00:18,718 They most often occur when the core of a massive star runs 7 00:00:18,718 --> 00:00:21,721 out of fuel and collapses. 8 00:00:23,089 --> 00:00:24,958 But in the past couple of decades, 9 00:00:24,958 --> 00:00:29,763 astronomers have found supernovae up to 100 times brighter than usual. 10 00:00:30,263 --> 00:00:33,800 The mystery is how these superluminous supernovae 11 00:00:34,234 --> 00:00:37,237 were powering up. 12 00:00:37,537 --> 00:00:40,240 Astronomers looked at six near superluminous 13 00:00:40,240 --> 00:00:43,243 supernovae to occur during Fermi's mission. 14 00:00:44,310 --> 00:00:46,646 Only one, in 2017, 15 00:00:46,646 --> 00:00:49,883 shows evidence of gamma rays, the highest-energy form of light. 16 00:00:50,683 --> 00:00:54,721 Analysis of these findings clearly favors one explanation. 17 00:00:55,889 --> 00:01:00,760 The extra power comes from a spinning, supermagnetized neutron star — 18 00:01:00,894 --> 00:01:03,963 called a magnetar — formed in the star's collapse. 19 00:01:05,765 --> 00:01:08,168 The magnetar’s intense magnetic field 20 00:01:08,168 --> 00:01:11,471 accelerates particles that ultimately produce gamma rays. 21 00:01:18,812 --> 00:01:22,248 At first, the debris absorbs this emission and converts it 22 00:01:22,248 --> 00:01:25,251 to visible light, boosting the brightness of the blast. 23 00:01:26,352 --> 00:01:29,289 After about three months, the debris thins out enough 24 00:01:29,289 --> 00:01:32,292 that the gamma rays can leak out and travel to us. 25 00:01:32,926 --> 00:01:36,563 With this observation, Fermi has helped solve a cosmic mystery 26 00:01:37,030 --> 00:01:40,033 and has added another class of gamma ray sources 27 00:01:40,200 --> 00:01:43,203 to its repertoire.