{"id":439114,"date":"2026-05-21T23:31:13","date_gmt":"2026-05-21T23:31:13","guid":{"rendered":"https:\/\/www.newsbeep.com\/nz\/439114\/"},"modified":"2026-05-21T23:31:13","modified_gmt":"2026-05-21T23:31:13","slug":"the-lives-of-black-holes-from-birth-to-death","status":"publish","type":"post","link":"https:\/\/www.newsbeep.com\/nz\/439114\/","title":{"rendered":"The lives of black holes, from birth to death"},"content":{"rendered":"<p>Of all the strange and spectacular things in outer space, nothing is stranger or more spectacular than black holes.<\/p>\n<p>These cosmic oddballs can\u2019t even be described without contradiction. Unlike a typical hole, for instance, a <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-black-hole\" rel=\"nofollow noopener\" target=\"_blank\">black hole<\/a> is not empty. Its core packs so much matter that its density is almost impossible to imagine. The smallest known black holes squeeze more than three times the mass of the sun into a volume about the diameter of a small city. One of the largest that scientists have found contains more than tens of billions of times the mass of the sun and stretches across a space bigger than the solar system.<\/p>\n<p>Because it holds so much mass in such a small space, nothing that gets too close to a black hole can escape its <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-gravity\" rel=\"nofollow noopener\" target=\"_blank\">gravity<\/a> \u2014 not even light. Yet to find black holes, scientists must look for the brightest beacons of light in space. (This light is given off as the black hole feeds on nearby gas.)<\/p>\n<p><a href=\"https:\/\/www.snexplores.org\/article\/explainer-what-are-black-holes\" rel=\"nofollow noopener\" target=\"_blank\">Explainer: What are black holes?<\/a><\/p>\n<p>Black holes have been known to devour stars, <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-planet\" rel=\"nofollow noopener\" target=\"_blank\">planets<\/a> and even other black holes. The superstrong gravity of supermassive black holes allows them to hold giant <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-galaxy\" rel=\"nofollow noopener\" target=\"_blank\">galaxies<\/a> together.<\/p>\n<p>Scientists have been grappling with the strangeness of black holes for centuries. John Michell appears to be the first person to have predicted their existence. Back in 1783, he proposed there might be \u201cdark stars\u201d with gravity too strong for their own light to escape.<\/p>\n<p>More than a century later, in 1915, Albert Einstein <a href=\"https:\/\/www.snexplores.org\/article\/einstein-taught-us-its-all-relative\" rel=\"nofollow noopener\" target=\"_blank\">proposed his theory of general relativity<\/a> to describe how gravity works. That theory predicted matter could collapse into a single point of infinite density \u2014 a black hole. Its mass would be so extreme that it would warp the space around it. The result: Anything passing nearby would be pulled into it.<\/p>\n<p>Decades after Einstein introduced this idea, <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-x-ray-definition-pronunciation\" rel=\"nofollow noopener\" target=\"_blank\">X-ray<\/a> <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-telescope\" rel=\"nofollow noopener\" target=\"_blank\">telescopes<\/a> confirmed such weird objects exist. Researchers observed blasts of high energy as black holes fed. And in 2019, the <a href=\"https:\/\/www.snexplores.org\/article\/how-virtual-telescope-got-first-black-hole-picture\" rel=\"nofollow noopener\" target=\"_blank\">Event Horizon Telescope<\/a> captured the <a href=\"https:\/\/www.snexplores.org\/article\/black-hole-first-photo-event-horizon-telescope\" rel=\"nofollow noopener\" target=\"_blank\">first direct image of a feeding black hole<\/a>.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" width=\"860\" height=\"460\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/05\/041019_LG-EV-MT_EHT_feat.jpg\" alt=\"041019_LG-EV-MT_EHT_feat.jpg\" class=\"wp-image-212370\"  \/>In 2019, astronomers captured the first ever image of a black hole. They used the Event Horizon Telescope, which is not one device but a worldwide network of connected radio telescopes.Event Horizon\u00a0Telescope\u00a0Collaboration<\/p>\n<p>Yet some of the most basic questions about these cosmic monsters remain unanswered. Astrophysicists don\u2019t know, for instance, why galaxies host giant black holes in their hearts. And then there\u2019s those supermassive monsters. How did they get so gargantuan? In fact, \u201cwhere do they come from?\u201d asks Marta Volonteri. This astrophysicist at the Paris Institute of Astrophysics in France has <a href=\"https:\/\/www.science.org\/doi\/10.1126\/science.1220843\" rel=\"noopener nofollow\" target=\"_blank\">developed models of how black holes might form<\/a>. And there are no clear answers for how the biggest ones do, she says. After 20 years of searching, she says, \u201cI still don\u2019t know.\u201d<\/p>\n<p>Scientists also are working to explain how black holes change over their lifetimes and how they might eventually die. Powerful telescopes and <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-model-definition-pronunciation\" rel=\"nofollow noopener\" target=\"_blank\">models<\/a> of the universe have offered up some good ideas. Yet the more scientists learn, the more they realize how little they know.<\/p>\n<p>This video illustrates the history of our understanding of black holes, from the conditions under which black holes form to the sizes they can take, where they\u2019re found and how they behave.National Geographic\/YouTube<\/p>\n<p>A black hole is born<\/p>\n<p>Black holes come in a range of sizes. Small ones contain up to 100 times the mass of the sun. Supermassive ones can have millions to tens of billions as much heft.<\/p>\n<p>This size range poses a big problem in explaining how black holes form.<\/p>\n<p>Traditionally, we have understood black holes to be \u201cstellar corpses,\u201d says Priya Natarajan. She\u2019s an astrophysicist at Yale University in New Haven, Conn.<\/p>\n<p>That seems to be true for the smallest ones, which scientists describe as \u201cmassive.\u201d They form from stars with about 20 to 30 times the mass of our sun. As they\u2019re dying, these big stars explode as supernovas, leaving behind black holes.<\/p>\n<p>Scientists know basically how this works.<\/p>\n<p><a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-supernova\" rel=\"nofollow noopener\" target=\"_blank\">Scientists Say: Supernova<\/a><\/p>\n<p>During active phases of their lives, <a href=\"https:\/\/www.snexplores.org\/article\/we-are-stardust\" rel=\"nofollow noopener\" target=\"_blank\">stars fuse lighter elements into heavier ones<\/a>, producing heat and light. Eventually, though, a star runs out of fuel. If it was the size of the sun, it will swell up as it dies. Later, it will collapse into a small, glowing core of oxygen and carbon.<\/p>\n<p>But when bigger stars run out of fuel, look out! They\u2019ll end up with an unstable iron core that keeps pulling in mass.<\/p>\n<p>Eventually, that core will collapse under its own weight. This may trigger an explosive supernova. What\u2019s left behind just keeps collapsing into an increasingly dense ball. Stars that started with between eight and 20 times the mass of the sun will collapse to make a neutron star. Its pressure crushes its particles together.<\/p>\n<p>Bigger stars, though, become a black hole. (They may or may not go through a supernova phase first.) These are called \u201cstellar-mass\u201d or \u201cmassive\u201d black holes. Astronomers predict that scattered around our galaxy are hundreds of millions of massive black holes.<\/p>\n<p>They\u2019re very different from the supermassive types often found at the centers of galaxies.<\/p>\n<p>Sagittarius A* sits at the center of our Milky Way. This heavyweight carries as much mass as 4 million suns. The black hole at the center of Andromeda, our nearest galactic neighbor, has the mass of more than 100 million suns. The largest black hole known \u2014 TON 618 \u2014 contains 66 billion times our sun\u2019s mass.<\/p>\n<p>But even the largest stars don\u2019t have nearly that much mass. So how truly monster black holes arise poses an interesting puzzle, says Natarajan: How could they get so enormous?<\/p>\n<p>Black holes grow at least two ways, she notes. \u201cThey either gobble gas and material from around them, or they collide with other black holes.\u201d<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" width=\"1030\" height=\"551\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/05\/1030_black_hole_lifecycles_ticker.jpg\" alt=\"an illustration of two black holes smashing together and creating gravitational waves\" class=\"wp-image-236621\"  \/>When black holes smash together, the collision produces gravitational waves that ripple through the fabric of the universe. Scientists have begun detecting these waves using sensitive, underground observatories. MARK GARLICK\/SCIENCE PHOTO LIBRARY\/ALAMY STOCK PHOTO<\/p>\n<p>Galaxies are vast collections of stars. When they collide, the supermassive black holes at their centers may essentially <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-fusion-definition-pronunciation\" rel=\"nofollow noopener\" target=\"_blank\">fuse<\/a>.<\/p>\n<p>Here, \u201cthe black holes dance around each other and merge,\u201d says Volker Springel. Now, he notes, \u201cyou\u2019ve got a bigger one.\u201d Springel is an astrophysicist at the Max Planck Institute for Astrophysics in Garching, Germany. That <a href=\"https:\/\/www.sciencenews.org\/article\/largest-pair-black-holes-collision\" rel=\"noopener nofollow\" target=\"_blank\">dancing and merging happens frequently<\/a>, he says. \u201cSo we expect, in the future, [we\u2019ll get] slightly bigger black holes even than the biggest ones we have today.\u201d<\/p>\n<p>But not even collisions can explain how today\u2019s supermassive black holes got so big, says Natarajan.<\/p>\n<p>Observations of some of these behemoths suggest they formed when the universe was young. To get so big, they\u2019d have had to grow stepwise from collision after collision after collision \u2014 or spend eons successively eating more and more stars and other mass entering their neighborhoods.<\/p>\n<p>Yet, Natarajan points out, there\u2019s simply not been enough time since the Big Bang for them to have grown that big if they were \u201cstarting from a piddly little stellar corpse.\u201d<\/p>\n<p>The supermassive mystery<\/p>\n<p>Surrounding every black hole is an event horizon. That\u2019s a point of no return. Once any information \u2014 including light \u2014 passes that horizon, it can never be retrieved. That means scientists can\u2019t analyze the contents of black holes to figure out how or when they formed.<\/p>\n<p>Simply put, says Natarajan: \u201cThey don\u2019t have any memory.\u201d<\/p>\n<p>Scientists have found other ways to study them, though. In the 2000s, Natarajan and other astrophysicists proposed that supermassive black holes might grow from giant black hole \u201cseeds.\u201d These might have formed from something other than a dying star.<\/p>\n<p>Gravity might have collapsed a massive cloud of gas to form a black hole, even before it became a star. These black hole seeds \u2014 each with a mass of about 1 million suns \u2014 might have merged to quickly form larger ones. Seeds that formed right after the Big Bang, Natarajan says, might have had time to spin up into the supermassive black holes we see today.<\/p>\n<p><img loading=\"lazy\" decoding=\"async\" width=\"1440\" height=\"806\" src=\"https:\/\/www.newsbeep.com\/nz\/wp-content\/uploads\/2026\/05\/1440_black_hole_lifecycles_drifting_milky_way.jpg\" alt=\"This is an illustration of a close-up look at a black hole drifting through our Milky Way galaxy. The black hole distorts the space around it, which warps images of background stars lined up almost directly behind it.\" class=\"wp-image-236623\"  \/>This artist\u2019s illustration portrays a close-up look at a black hole drifting through our galaxy, the Milky Way. Such objects are the crushed-up remnants of massive stars that exploded as supernovas. Scientists suspect our galaxy may host 100 million stellar-mass black holes, as well as a supermassive one at its core.FECYT, IAC via NASA Goddard<\/p>\n<p>\u201cThere are certain conditions under which you can have gas that will \u2026 directly collapse into a black hole,\u201d she says. \u201cIt doesn\u2019t have to go through a star stage.\u201d The gas has to be made of pure hydrogen and helium, for example, with more gas constantly flooding in.<\/p>\n<p>Volonteri of the Paris Institute has also studied the formation of such seeds and their potential to have produced what are now supermassive black holes.<\/p>\n<p>In 2023, scientists <a href=\"https:\/\/iopscience.iop.org\/article\/10.3847\/2041-8213\/ad0e76\" rel=\"noopener nofollow\" target=\"_blank\">spotted the bright center of a galaxy<\/a> more than 10 billion <a href=\"https:\/\/www.snexplores.org\/article\/scientist-say-light-year\" rel=\"nofollow noopener\" target=\"_blank\">light-years<\/a> away. It was fueled by a black hole with the mass of about 40 million suns. It was so big, relative to the size of its galaxy, that scientists described it as \u201cover-massive.\u201d Even more impressive: This black hole likely formed when the universe was in its infancy (just a few hundred million years old).<\/p>\n<p>That discovery, called UHZ1, fits with Natarajan\u2019s models. It likely started as some giant black hole seed that formed after the collapse of an enormous cloud of gas.<\/p>\n<p>Black hole evolution<\/p>\n<p>To study how black holes evolve, scientists must get creative. By focusing on stuff that surrounds a black hole, they can make educated guesses on how the beast is behaving.<\/p>\n<p>Stellar-mass black holes generally remain quiet and unchanging. Unless, that is, something begins to <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-orbit\" rel=\"nofollow noopener\" target=\"_blank\">orbit<\/a> too closely \u2014 such as gas, dust, a planet or a star. Then, the black hole\u2019s strong gravity may rip the intruder apart and gobble it up. As remains of the intruder fall into the black hole, the disintegrating stuff burns up, producing bright bursts of radiation.<\/p>\n<p>What\u2019s happening in supermassive black holes is more puzzling. Most galaxies have a supermassive black hole at their center. No one knows which came first, the galaxy or the black hole. In fact, Natarajan suspects, they likely formed at the same time.<\/p>\n<p>Watching how a galaxy changes, she says, can hint at how its black hole is behaving.<\/p>\n<p>To get bigger, black holes feed on anything that gets near them. They can even be cannibals. Listen as several astrophysicists describe such colossally energetic feeding events.Science Channel\/YouTube<\/p>\n<p>What\u2019s more, \u201cblack holes are believed to be a major factor in galaxy evolution,\u201d says Springel at the Max Planck Institute. For instance, supermassive ones can control the size of their host galaxy. If they didn\u2019t, he says, this collection of stars \u2014 the galaxy \u2014 would \u201ccontinue to get bigger and bigger.\u201d And here\u2019s why.<\/p>\n<p>Dense clouds of hot gas move throughout a galaxy. As these clouds cool, they can condense to form stars. The Milky Way produces an estimated three or four new stars each year. So-called <a href=\"https:\/\/www.cfa.harvard.edu\/research\/topic\/starburst-galaxies\" rel=\"noopener nofollow\" target=\"_blank\">starburst galaxies<\/a> can spawn hundreds per year.<\/p>\n<p>But galaxies can\u2019t grow infinitely large. \u201cThere\u2019s a pretty hard maximum,\u201d Springel says. It\u2019s about 1 trillion times the mass of our sun. (A rare few are estimated to be 10 trillion solar masses.)<\/p>\n<p>The reason for this limit may be that a black hole and a galaxy tend to grow in lockstep. The galaxy makes more stars. Then the black hole ingests more gas, stars or other nearby stuff and grows. As the black hole eats, it produces powerful jets of energy.<\/p>\n<p><a href=\"https:\/\/www.snexplores.org\/article\/explainer-what-computer-model\" rel=\"nofollow noopener\" target=\"_blank\">Explainer: What is a computer model?<\/a><\/p>\n<p>Scientists used to believe that all the jets\u2019 energy would escape and \u201cnot do much damage to the galaxy,\u201d says Springel. But computer models by his team and others now tell a different story.<\/p>\n<p>Black holes can act like a thermostat for a galaxy, keeping the heat on, Springel finds. The jet\u2019s bonus energy can superheat clouds of gas. When that happens, big galaxies can\u2019t cool enough to form stars. \u201cThere\u2019s a trickle of star formation sometimes left,\u201d he says.<\/p>\n<p>It\u2019s different in smaller galaxies. Black holes that don\u2019t produce so much energy can still give birth to new stars.<\/p>\n<p>Do you have a science question? We can help!<\/p>\n<p class=\"has-text-align-center\"><a href=\"https:\/\/forms.gle\/YbhPosFTMqjbSNnV7\" target=\"_blank\" rel=\"noreferrer noopener nofollow\">Submit your question here<\/a>, and we might answer it an upcoming issue of\u00a0Science News Explores<\/p>\n<p>Black hole mortality<\/p>\n<p>Black holes lead dynamic lives. Within the last year alone, scientists have made several surprising discoveries. One team found evidence of <a href=\"https:\/\/www.nature.com\/articles\/d41586-025-02212-7\" rel=\"noopener nofollow\" target=\"_blank\">a type of black hole collision so massive that scientists had thought it impossible<\/a>. Other astronomers spotted <a href=\"https:\/\/arxiv.org\/abs\/2512.04166\" rel=\"noopener nofollow\" target=\"_blank\">a runaway black hole<\/a> that had likely been booted from its galaxy \u2014 dragging a trail of newborn stars behind it.<\/p>\n<p>The stars that produce massive black holes only live for a few million years. But their surviving black holes, models suggest, stick around for billions of years or more. With such lengthy lives, black holes have a long, long time to interact with each other and everything else.<\/p>\n<p><a href=\"https:\/\/www.snexplores.org\/article\/lets-learn-about-the-milky-way\" rel=\"nofollow noopener\" target=\"_blank\">Let\u2019s learn about the Milky Way<\/a><\/p>\n<p>Scientists predict that within the next 10 billion years or so, the Milky Way might merge with the Andromeda galaxy. (Estimates that this will happen range from less than 50 percent to near certainty.) If these galaxies merge, their black holes will, too, producing an even bigger one. Galaxies and their black holes elsewhere in the cosmos will continue colliding, too, says Springel \u2014 but likely not forever.<\/p>\n<p>The universe is expanding. It\u2019s <a href=\"https:\/\/www.snexplores.org\/article\/how-will-universe-end\" rel=\"nofollow noopener\" target=\"_blank\">unclear if that expansion will continue without end<\/a>. But if it does, galaxies will get ever farther apart. If there\u2019s a Milky Way-Andromeda merger, says Springel, this super-galaxy will become a kind of bright but dimming island in a vast sea of dark, empty space.<\/p>\n<p>Eventually, \u201call the galaxies will stop merging with each other,\u201d he says. \u201cThey\u2019ll become isolated.\u201d<\/p>\n<p>For a while, they\u2019ll keep making new stars. As those suns eventually die in supernovas, new black holes will form. In time, though, galaxies will run out of star-making stuff. All their stars will eventually run out of fuel \u2014 and go dark.<\/p>\n<p>Some theories suggest that all the matter from dead stars and planets may also break apart. In the end, black holes may be the last survivors in our universe.<\/p>\n<p>And even they may die.<\/p>\n<p>Evaporating out of existence?<\/p>\n<p>In 1974, astrophysicist Stephen Hawking predicted that black holes could \u201cevaporate.\u201d That is, they could fall apart by gradually releasing <a href=\"https:\/\/www.snexplores.org\/article\/scientists-say-radiation\" rel=\"nofollow noopener\" target=\"_blank\">radiation<\/a>.<\/p>\n<p>This evaporation would develop through a process described by a field of physics called <a href=\"https:\/\/www.snexplores.org\/article\/quantum-world-mind-bogglingly-weird\" rel=\"nofollow noopener\" target=\"_blank\">quantum theory<\/a>. It predicts that the emptiness of space undergoes fluctuations as tiny particles pop in and out of existence. Because of how these particles behave near the outer edge of a black hole \u2014 its event horizon \u2014 they can reduce its mass.\u00a0 \u00a0<\/p>\n<p>Although no one has directly observed Hawking radiation, the idea mostly fits with scientists\u2019 current ideas about the physics of black holes.<\/p>\n<p>\u201cThe smaller the black hole is, the quicker they will do this,\u201d says Springel. At the end of the universe, the smallest black holes will be the first to shrink.<\/p>\n<p>What happens next remains a mystery.<\/p>\n<p>Supermassive black holes may evaporate one day, too \u2014 or not. Recent research suggests that some <a href=\"https:\/\/arxiv.org\/abs\/1705.10172\" rel=\"noopener nofollow\" target=\"_blank\">strange physics<\/a> may halt their death throes. These theories suggest a black hole cannot lose all the \u201cinformation\u201d it had acquired. So their evaporation may stop once such beasts have lost half their mass.<\/p>\n<p>Some physicists have proposed an even wilder idea: that a star may collapse into something called a <a href=\"https:\/\/arxiv.org\/abs\/2506.02117v1\" rel=\"noopener nofollow\" target=\"_blank\">black shell<\/a>. It sort of mimics a black hole. Here, all the collapsing mass forms a dense outer shell. Inside would be what scientists call a \u201ctrue vacuum\u201d \u2014 a volume with the absolute lowest energy possible.\u00a0\u00a0<\/p>\n<p>But that\u2019s just an idea.<\/p>\n<p>With every question scientists answer about how black holes form, live or die, they uncover new, even stranger questions. After all, they\u2019re studying the most extreme things in all of nature.<\/p>\n<p>Frustrating as it is, black holes \u201crepresent the end of knowledge,\u201d says Natarajan. Simply put, she says, they\u2019re \u201cthe edge of what we can know.\u201d<\/p>\n","protected":false},"excerpt":{"rendered":"Of all the strange and spectacular things in outer space, nothing is stranger or more spectacular than black&hellip;\n","protected":false},"author":2,"featured_media":439115,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[24],"tags":[111,139,69,393,147],"class_list":["post-439114","post","type-post","status-publish","format-standard","has-post-thumbnail","category-physics","tag-new-zealand","tag-newzealand","tag-nz","tag-physics","tag-science"],"_links":{"self":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/439114","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/comments?post=439114"}],"version-history":[{"count":0,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/posts\/439114\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media\/439115"}],"wp:attachment":[{"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/media?parent=439114"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/categories?post=439114"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.newsbeep.com\/nz\/wp-json\/wp\/v2\/tags?post=439114"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}