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<rss xmlns:itunes="http://www.itunes.com/dtds/podcast-1.0.dtd" xmlns:atom="http://www.w3.org/2005/Atom" xmlns:podcast="https://podcastindex.org/namespace/1.0" xmlns:media="http://search.yahoo.com/mrss/" version="2.0"><channel><title>Unknown Universe</title><link>https://www.spreaker.com/podcast/unknown-universe--7257521</link><description><![CDATA[The universe is filled with things we can observe but still cannot fully explain.Unknown Universe explores the biggest mysteries in astronomy and space science, from black holes and hidden oceans to distant worlds, dark matter, dark energy, and the strange physics shaping the cosmos.Each episode follows the evidence, separates what scientists know from what remains uncertain, and takes you to the edge of our understanding of the universe.]]></description><atom:link href="https://www.spreaker.com/show/7257521/episodes/feed" rel="self" type="application/rss+xml"/><language>en</language><category>Science</category><copyright>Copyright Jraijket</copyright><image><url>https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg</url><title>Unknown Universe</title><link>https://www.spreaker.com/podcast/unknown-universe--7257521</link></image><lastBuildDate>Mon, 21 Sep 2026 02:23:16 +0000</lastBuildDate><itunes:author>Jraijket</itunes:author><itunes:owner><itunes:name>Jraijket</itunes:name><itunes:email>feeds@spreaker.com</itunes:email></itunes:owner><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:subtitle>The universe is filled with things we can observe but still cannot fully explain.Unknown Universe explores the biggest mysteries in astronomy and space science, from black holes and hidden oceans to distant worlds, dark matter, dark energy, and the...</itunes:subtitle><itunes:summary><![CDATA[The universe is filled with things we can observe but still cannot fully explain.Unknown Universe explores the biggest mysteries in astronomy and space science, from black holes and hidden oceans to distant worlds, dark matter, dark energy, and the strange physics shaping the cosmos.Each episode follows the evidence, separates what scientists know from what remains uncertain, and takes you to the edge of our understanding of the universe.]]></itunes:summary><itunes:category text="Science"/><itunes:explicit>false</itunes:explicit><podcast:guid>b60bcbe9-ffbd-5d1c-adba-e3a88ba7ff67</podcast:guid><itunes:type>episodic</itunes:type><item><title>Inside a Neutron Star: Matter May Not Exist as We Know It</title><link>https://www.spreaker.com/episode/inside-a-neutron-star-matter-may-not-exist-as-we-know-it--75271075</link><description><![CDATA[A neutron star can contain more mass than the Sun inside an object only tens of kilometers across.<br />We understand its outer layers reasonably well.<br />But travel deeper, toward pressures and densities impossible to reproduce directly in laboratories, and certainty begins to disappear.<br />Do neutrons remain recognizable particles?<br />Do new particles emerge?<br />Can matter transform into a state containing deconfined quarks?<br />Astronomers are now using X rays and gravitational waves to investigate one of the strangest laboratories in the universe.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/75271075</guid><pubDate>Mon, 21 Sep 2026 02:23:13 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/75271075/inside_a_neutron_star_matter_may_not_exist_as_we_know_it_091556.mp3" length="7477333" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/76690519-5687-4e77-9e40-e48f0aa2910c/76690519-5687-4e77-9e40-e48f0aa2910c.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/76690519-5687-4e77-9e40-e48f0aa2910c/76690519-5687-4e77-9e40-e48f0aa2910c.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/76690519-5687-4e77-9e40-e48f0aa2910c/76690519-5687-4e77-9e40-e48f0aa2910c.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>A neutron star can contain more mass than the Sun inside an object only tens of kilometers across.
We understand its outer layers reasonably well.
But travel deeper, toward pressures and densities impossible to reproduce directly in laboratories, and...</itunes:subtitle><itunes:summary><![CDATA[A neutron star can contain more mass than the Sun inside an object only tens of kilometers across.<br />We understand its outer layers reasonably well.<br />But travel deeper, toward pressures and densities impossible to reproduce directly in laboratories, and certainty begins to disappear.<br />Do neutrons remain recognizable particles?<br />Do new particles emerge?<br />Can matter transform into a state containing deconfined quarks?<br />Astronomers are now using X rays and gravitational waves to investigate one of the strangest laboratories in the universe.<br />]]></itunes:summary><itunes:duration>468</itunes:duration><itunes:keywords>astrophysics,core,dense,eight,equation,gravitational,gw,matter,neutron,nicer,nuclear,of,physics,pulsars,quark,seventeen,star,state,waves,zero</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>The Cold Spot: Why Is Part of the Universe Too Cold?</title><link>https://www.spreaker.com/episode/the-cold-spot-why-is-part-of-the-universe-too-cold--75086382</link><description><![CDATA[Across almost the entire sky lies ancient radiation released when the universe was still extremely young.<br />Its tiny temperature variations eventually became galaxies, clusters, and the enormous cosmic web we see today. But hidden inside that remarkably uniform pattern is an unusually large cold region known simply as the Cold Spot.<br />Astronomers have searched for structures between us and the ancient light that might explain it. They have found an enormous underdense region in roughly the same direction, but whether that structure can fully account for the anomaly remains uncertain.<br />The Cold Spot may ultimately be an unlikely statistical fluctuation. Or it may be telling us something deeper about the universe we thought we understood.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/75086382</guid><pubDate>Sat, 12 Sep 2026 09:09:56 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/75086382/the_cold_spot_why_is_part_of_the_universe_too_cold_155925.mp3" length="9335162" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/81ae8a3a-03c7-475c-bc5d-494805f834ab/81ae8a3a-03c7-475c-bc5d-494805f834ab.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/81ae8a3a-03c7-475c-bc5d-494805f834ab/81ae8a3a-03c7-475c-bc5d-494805f834ab.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/81ae8a3a-03c7-475c-bc5d-494805f834ab/81ae8a3a-03c7-475c-bc5d-494805f834ab.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>Across almost the entire sky lies ancient radiation released when the universe was still extremely young.
Its tiny temperature variations eventually became galaxies, clusters, and the enormous cosmic web we see today. But hidden inside that remarkably...</itunes:subtitle><itunes:summary><![CDATA[Across almost the entire sky lies ancient radiation released when the universe was still extremely young.<br />Its tiny temperature variations eventually became galaxies, clusters, and the enormous cosmic web we see today. But hidden inside that remarkably uniform pattern is an unusually large cold region known simply as the Cold Spot.<br />Astronomers have searched for structures between us and the ancient light that might explain it. They have found an enormous underdense region in roughly the same direction, but whether that structure can fully account for the anomaly remains uncertain.<br />The Cold Spot may ultimately be an unlikely statistical fluctuation. Or it may be telling us something deeper about the universe we thought we understood.<br />]]></itunes:summary><itunes:duration>584</itunes:duration><itunes:keywords>anomalies,astrophysics,background,bang,big,cmb,cold,cosmic,cosmology,early,eridanus,inflation,microwave,planck,spot,supervoid,telescope,universe,unknown,wmap</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>The Hubble Tension: Why Does the Universe Give Us Two Answers?</title><link>https://www.spreaker.com/episode/the-hubble-tension-why-does-the-universe-give-us-two-answers--73849199</link><description><![CDATA[Astronomers have developed remarkably precise ways to measure how quickly the universe is expanding.<br />There is just one problem.<br />Measurements of the nearby universe produce one answer, while predictions based on the early universe produce another. The difference has survived years of improved observations and even a major cross check from the James Webb Space Telescope.<br />Either an important source of measurement error remains hidden, or our standard description of cosmic history may be incomplete.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73849199</guid><pubDate>Wed, 12 Aug 2026 14:45:32 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73849199/the_hubble_tension_why_does_the_universe_give_us_two_answers_213641.mp3" length="7583495" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/80426abe-51eb-4ef9-9f63-d0e073e49adb/80426abe-51eb-4ef9-9f63-d0e073e49adb.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/80426abe-51eb-4ef9-9f63-d0e073e49adb/80426abe-51eb-4ef9-9f63-d0e073e49adb.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/80426abe-51eb-4ef9-9f63-d0e073e49adb/80426abe-51eb-4ef9-9f63-d0e073e49adb.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>Astronomers have developed remarkably precise ways to measure how quickly the universe is expanding.
There is just one problem.
Measurements of the nearby universe produce one answer, while predictions based on the early universe produce another. The...</itunes:subtitle><itunes:summary><![CDATA[Astronomers have developed remarkably precise ways to measure how quickly the universe is expanding.<br />There is just one problem.<br />Measurements of the nearby universe produce one answer, while predictions based on the early universe produce another. The difference has survived years of improved observations and even a major cross check from the James Webb Space Telescope.<br />Either an important source of measurement error remains hidden, or our standard description of cosmic history may be incomplete.<br />]]></itunes:summary><itunes:duration>474</itunes:duration><itunes:keywords>astronomy,astrophysics,background,cepheid,constant,cosmic,cosmology,expanding,hubble,james,microwave,podcast,space,telescope,tension,universe,unknown,variables,webb</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>Oumuamua: The Mysterious Object That Came From Another Star</title><link>https://www.spreaker.com/episode/oumuamua-the-mysterious-object-that-came-from-another-star--73849084</link><description><![CDATA[In twenty seventeen, astronomers discovered an object moving through the Solar System on a trajectory unlike anything they had seen before.<br />Oumuamua was not bound to the Sun. It had arrived from interstellar space and would eventually return there. Its unusual brightness changes, lack of an obvious cometary tail, and unexpected acceleration created one of the most debated astronomical mysteries of recent years.<br />The evidence strongly supports a natural object. But because Oumuamua disappeared before scientists could study it in detail, its exact nature may remain uncertain for a very long time.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73849084</guid><pubDate>Wed, 12 Aug 2026 14:35:20 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73849084/oumuamua_the_mysterious_object_that_came_from_another_star_213209.mp3" length="7264174" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3/01c0e2ff-7bd0-4efd-ad42-f1a2c66770a3.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>In twenty seventeen, astronomers discovered an object moving through the Solar System on a trajectory unlike anything they had seen before.
Oumuamua was not bound to the Sun. It had arrived from interstellar space and would eventually return there....</itunes:subtitle><itunes:summary><![CDATA[In twenty seventeen, astronomers discovered an object moving through the Solar System on a trajectory unlike anything they had seen before.<br />Oumuamua was not bound to the Sun. It had arrived from interstellar space and would eventually return there. Its unusual brightness changes, lack of an obvious cometary tail, and unexpected acceleration created one of the most debated astronomical mysteries of recent years.<br />The evidence strongly supports a natural object. But because Oumuamua disappeared before scientists could study it in detail, its exact nature may remain uncertain for a very long time.<br />]]></itunes:summary><itunes:duration>455</itunes:duration><itunes:keywords>alien,astronomy,astrophysics,comet,cosmic,documentary,interstellar,mystery,object,oumuamua,pan,podcast,science,solar,space,starrs,system,universe,unknown</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>Boyajian's Star: Why Does This Star Keep Fading?</title><link>https://www.spreaker.com/episode/boyajian-s-star-why-does-this-star-keep-fading--73848985</link><description><![CDATA[More than a thousand light years away, an otherwise ordinary star began doing something astronomers did not expect.<br />Its brightness dropped dramatically and irregularly. The pattern did not look like a normal planet crossing in front of a star, and for a time, explanations ranged from clouds of comets to far more speculative ideas.<br />Today, dust appears to explain much of the strange dimming. But the story of Boyajian's Star remains one of the best examples of how astronomy turns an unexplained observation into a scientific investigation.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73848985</guid><pubDate>Wed, 12 Aug 2026 14:30:17 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73848985/boyajian_s_star_why_does_this_star_keep_fading_212720.mp3" length="6955302" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/b62df9a5-f879-493b-a4a4-8a3604b28da8/b62df9a5-f879-493b-a4a4-8a3604b28da8.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/b62df9a5-f879-493b-a4a4-8a3604b28da8/b62df9a5-f879-493b-a4a4-8a3604b28da8.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/b62df9a5-f879-493b-a4a4-8a3604b28da8/b62df9a5-f879-493b-a4a4-8a3604b28da8.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>More than a thousand light years away, an otherwise ordinary star began doing something astronomers did not expect.
Its brightness dropped dramatically and irregularly. The pattern did not look like a normal planet crossing in front of a star, and for...</itunes:subtitle><itunes:summary><![CDATA[More than a thousand light years away, an otherwise ordinary star began doing something astronomers did not expect.<br />Its brightness dropped dramatically and irregularly. The pattern did not look like a normal planet crossing in front of a star, and for a time, explanations ranged from clouds of comets to far more speculative ideas.<br />Today, dust appears to explain much of the strange dimming. But the story of Boyajian's Star remains one of the best examples of how astronomy turns an unexplained observation into a scientific investigation.<br />]]></itunes:summary><itunes:duration>435</itunes:duration><itunes:keywords>astronomy,boyajian's,circumstellar,dimming,dust,eight,exocomets,five,four,kepler,kic,mystery,podcast,six,space,star,stellar,tabby's,telescope,two</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>Rogue Planets: The Hidden Worlds Drifting Between the Stars</title><link>https://www.spreaker.com/episode/rogue-planets-the-hidden-worlds-drifting-between-the-stars--73832358</link><description><![CDATA[Some planets may have no sunrise at all.<br />Rogue planets travel through interstellar space without orbiting a host star. Some may have been violently expelled from planetary systems, while others may have formed more like isolated stars.<br />Because these worlds are cold, dark, and extraordinarily difficult to detect, astronomers still do not know how common they are. Yet evidence suggests that a hidden population of planets may be wandering throughout the Milky Way.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73832358</guid><pubDate>Wed, 12 Aug 2026 02:50:32 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73832358/rogue_planets_the_hidden_worlds_drifting_between_the_stars_094611.mp3" length="10179439" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/02428060-264a-4412-9cc2-33b9a3ad7b2b/02428060-264a-4412-9cc2-33b9a3ad7b2b.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/02428060-264a-4412-9cc2-33b9a3ad7b2b/02428060-264a-4412-9cc2-33b9a3ad7b2b.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/02428060-264a-4412-9cc2-33b9a3ad7b2b/02428060-264a-4412-9cc2-33b9a3ad7b2b.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>Some planets may have no sunrise at all.
Rogue planets travel through interstellar space without orbiting a host star. Some may have been violently expelled from planetary systems, while others may have formed more like isolated stars.
Because these...</itunes:subtitle><itunes:summary><![CDATA[Some planets may have no sunrise at all.<br />Rogue planets travel through interstellar space without orbiting a host star. Some may have been violently expelled from planetary systems, while others may have formed more like isolated stars.<br />Because these worlds are cold, dark, and extraordinarily difficult to detect, astronomers still do not know how common they are. Yet evidence suggests that a hidden population of planets may be wandering throughout the Milky Way.<br />]]></itunes:summary><itunes:duration>637</itunes:duration><itunes:keywords>astronomy,astrophysics,cosmic,exoplanets,floating,formation,free,gravitational,interstellar,microlensing,milky,mysteries,planetary,planets,podcast,rogue,space,universe,unknown,way</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>The Great Attractor: What Is Pulling the Milky Way Through Space?</title><link>https://www.spreaker.com/episode/the-great-attractor-what-is-pulling-the-milky-way-through-space--73832251</link><description><![CDATA[The Milky Way is not standing still.<br />Our galaxy and thousands of neighboring galaxies are moving through space in a direction that cannot be explained by cosmic expansion alone. For decades, astronomers have traced part of this motion toward a region known as the Great Attractor.<br />But the Great Attractor is hidden behind the crowded plane of our own galaxy, and the modern explanation is more complicated than a single enormous object.<br />This episode follows the evidence behind one of astronomy's strangest large scale mysteries and asks what is really pulling our region of the universe through space.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73832251</guid><pubDate>Wed, 12 Aug 2026 02:45:11 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73832251/the_great_attractor_what_is_pulling_the_milky_way_through_space_093948.mp3" length="10302737" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/86649b6c-47e2-4eb0-b50a-a084c07754db/86649b6c-47e2-4eb0-b50a-a084c07754db.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/86649b6c-47e2-4eb0-b50a-a084c07754db/86649b6c-47e2-4eb0-b50a-a084c07754db.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/86649b6c-47e2-4eb0-b50a-a084c07754db/86649b6c-47e2-4eb0-b50a-a084c07754db.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>The Milky Way is not standing still.
Our galaxy and thousands of neighboring galaxies are moving through space in a direction that cannot be explained by cosmic expansion alone. For decades, astronomers have traced part of this motion toward a region...</itunes:subtitle><itunes:summary><![CDATA[The Milky Way is not standing still.<br />Our galaxy and thousands of neighboring galaxies are moving through space in a direction that cannot be explained by cosmic expansion alone. For decades, astronomers have traced part of this motion toward a region known as the Great Attractor.<br />But the Great Attractor is hidden behind the crowded plane of our own galaxy, and the modern explanation is more complicated than a single enormous object.<br />This episode follows the evidence behind one of astronomy's strangest large scale mysteries and asks what is really pulling our region of the universe through space.<br />]]></itunes:summary><itunes:duration>644</itunes:duration><itunes:keywords>astronomy,attractor,avoidance,clusters,cosmic,cosmology,flows,galaxy,great,laniakea,large,milky,of,podcast,scale,shapley,supercluster,universe,way,zone</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item><item><title>Fast Radio Bursts: What Is Sending These Signals Across the Universe?</title><link>https://www.spreaker.com/episode/fast-radio-bursts-what-is-sending-these-signals-across-the-universe--73832156</link><description><![CDATA[For only a few thousandths of a second, a distant galaxy can suddenly become one of the brightest radio sources in the sky.<br />These events are called fast radio bursts. Some happen once. Others repeat. A major breakthrough came when a magnetar inside our own Milky Way produced an FRB like burst, proving that at least some of these mysterious signals can come from highly magnetized neutron stars.<br />But the full story is still unresolved.<br />]]></description><guid isPermaLink="false">https://api.spreaker.com/episode/73832156</guid><pubDate>Wed, 12 Aug 2026 02:38:19 +0000</pubDate><enclosure url="https://dts.podtrac.com/redirect.mp3/api.spreaker.com/download/episode/73832156/fast_radio_bursts_what_is_sending_these_signals_across_the_universe_093429.mp3" length="8390574" type="audio/mpeg"/><podcast:transcript url="https://transcription.spreaker.com/starship/80e4e0e1-ef61-4126-8641-71d1a7cd4550/80e4e0e1-ef61-4126-8641-71d1a7cd4550.srt" type="application/x-subrip" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/80e4e0e1-ef61-4126-8641-71d1a7cd4550/80e4e0e1-ef61-4126-8641-71d1a7cd4550.txt" type="text/plain" language="en"/><podcast:transcript url="https://transcription.spreaker.com/starship/80e4e0e1-ef61-4126-8641-71d1a7cd4550/80e4e0e1-ef61-4126-8641-71d1a7cd4550.vtt" type="text/vtt" language="en"/><itunes:author>Jraijket</itunes:author><itunes:subtitle>For only a few thousandths of a second, a distant galaxy can suddenly become one of the brightest radio sources in the sky.
These events are called fast radio bursts. Some happen once. Others repeat. A major breakthrough came when a magnetar inside...</itunes:subtitle><itunes:summary><![CDATA[For only a few thousandths of a second, a distant galaxy can suddenly become one of the brightest radio sources in the sky.<br />These events are called fast radio bursts. Some happen once. Others repeat. A major breakthrough came when a magnetar inside our own Milky Way produced an FRB like burst, proving that at least some of these mysterious signals can come from highly magnetized neutron stars.<br />But the full story is still unresolved.<br />]]></itunes:summary><itunes:duration>525</itunes:duration><itunes:keywords>astronomy,astrophysics,bursts,chime,cosmic,deep,documentary,fast,frb,magnetars,mysteries,neutron,podcast,radio,science,signals,space,stars</itunes:keywords><itunes:explicit>false</itunes:explicit><itunes:image href="https://d3wo5wojvuv7l.cloudfront.net/t_rss_itunes_square_1400/images.spreaker.com/original/2ec82ce37b1ee326e782bbbb0138bb81.jpg"/><itunes:episodeType>full</itunes:episodeType></item></channel></rss>
