{"id":219324,"date":"2022-12-11T23:58:29","date_gmt":"2022-12-11T21:58:29","guid":{"rendered":"https:\/\/osr.org\/?p=219324"},"modified":"2024-04-25T11:51:20","modified_gmt":"2024-04-25T09:51:20","slug":"what-is-a-black-hole","status":"publish","type":"post","link":"https:\/\/osr.org\/en-uk\/blog\/astronomy-uk\/what-is-a-black-hole\/","title":{"rendered":"What Is a Black Hole?"},"content":{"rendered":"

What is a Black Hole?<\/span><\/h2>\n

A black hole is a region of space where the force of gravity is so strong that nothing can escape it, not even light. This occurs when an object\u2019s mass is condensed into a small enough area so that its gravity causes it to collapse. They feature an imaginary boundary called an event horizon<\/a>. Anything that passes this line cannot escape the gravitational pull. As light cannot escape, we can only observe them by seeing their accretion disk, an illuminated circular structure composed of matter being dragged towards the singularity<\/a>.<\/p>\n

\"An<\/p>\n

There are four known types of black holes.<\/p>\n

Micro Black Hole<\/span><\/h2>\n

As the name suggests, a micro black hole is the smallest type. In fact, so small they are most likely less than an atom in size. These black holes haven\u2019t been observed yet, not just because of their tiny size but also their incredibly short lifespan. Black holes constantly emit <\/span>Hawking Radiation<\/span><\/a>, losing mass as they do so. The smaller and hotter they are, the quicker it emits Hawking Radiation. And in micro black holes, this results in a lifespan of just a fraction of a second.<\/span><\/p>\n

In nature, these are a type of primordial black hole, forming in the seconds following the Big Bang. It\u2019s also possible that they could be created in particle accelerators here on Earth, such as CERN\u2019s <\/span>Large Hadron Collider<\/span><\/a>. But don\u2019t worry; if this happened, any black hole created would evaporate almost immediately.<\/span><\/p>\n

Stellar Black Hole<\/span><\/h2>\n

Stellar black holes form when stars<\/a> with enough mass collapse after burning through their supply of nuclear fuel. But not all stars collapse into a stellar black hole. Our Sun, for instance, is too small ever to become a black hole. Stars with a mass between roughly 1.4 and 4 solar masses<\/a> will instead become neutron stars. Anything more massive will form a black hole.<\/p>\n

Supermassive Black Hole<\/span><\/h2>\n

Supermassive black holes are the most enormous, with masses as much as millions or even billions of solar masses. They are at the core of most large galaxies \u2013 the one at the centre of the Milky Way is called Sagittarius A* (pictured below). It still isn\u2019t understood<\/a> exactly how supermassive black holes get so big. The universe isn\u2019t old enough for them to have steadily grown to the size they are, nor would they be able to gain the required mass from nearby stars. Most likely, they formed shortly after the big bang, quickly gorging on large clouds of gas while galaxies were assembling.<\/p>\n

\"Sagittarius

EHT Collaboration<\/a>, CC BY 4.0<\/a>, via Wikimedia Commons<\/p><\/figure> EHT Collaboration<\/a>, CC BY 4.0<\/a>, via Wikimedia Commons<\/p><\/div>\n

Intermediate Black Hole<\/span><\/h2>\n

At the moment, intermediate black holes are almost entirely hypothetical. We\u2019ve seen evidence of stellar black holes, with masses up to 50 solar masses, and have directly observed supermassive black holes as small as 50,000 solar masses<\/a>. But to date, none have been found with a mass between these two sizes, other than an incident of two stellar black holes colliding and merging<\/a> in 2019. Given the vast gap in black hole sizes, scientists believe that intermediate black holes must exist and are examining several possible candidates.<\/p>\n

What Happens Inside a Black Hole?<\/span><\/h2>\n

After passing the event horizon, an object cannot escape heading towards the black hole’s centre. As gravity pulls ever stronger, the object would tear apart as it approached the singularity. This is where all the object’s matter condenses into an infinitely small area. Here, physics breaks down as we understand it, and what happens next is a mystery. Some believe that they could be an entrance to a <\/span>wormhole<\/span><\/a>, a theoretical tunnel connecting two points in spacetime. Others say that when one forms, a big bang occurs at its singularity, creating a new universe outside the black hole’s parent universe \u2013 and that our universe is inside one! Unfortunately, it’s unlikely that we’ll ever know. Even if one was close enough to investigate, no information could cross back over the event horizon to escape and give us answers.<\/span><\/p>\n

\"An<\/p>\n

Black holes are a fascinating part of our universe that still hold many mysteries. Our knowledge of them is increasing all the time, but until we know more, why not brush up on stars and our galaxy using OSR\u2019s One Million Stars App<\/a>?<\/p>\n

OSR One Million Stars App<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"

What is a Black Hole? A black hole is a region of space where the force of gravity is so strong that nothing can escape it, not even light. This occurs when an object\u2019s mass is condensed into a small enough area so that its gravity causes it to collapse. They feature an imaginary boundary […]<\/p>\n","protected":false},"author":50,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"inline_featured_image":false,"footnotes":""},"categories":[1375],"tags":[],"class_list":["post-219324","post","type-post","status-publish","format-standard","hentry","category-astronomy-uk"],"acf":[],"yoast_head":"\nWhat Is a Black Hole? - Online Star Register<\/title>\n<meta name=\"description\" content=\"They sometime have a bad reputation, but what is a black hole? 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