{"id":71010,"date":"2024-01-25T13:00:00","date_gmt":"2024-01-25T13:00:00","guid":{"rendered":"https:\/\/entertainment.runfyers.com\/index.php\/2024\/01\/25\/how-supernovae-are-helping-uncover-the-mysteries-of-dark-energy\/"},"modified":"2024-01-25T13:00:00","modified_gmt":"2024-01-25T13:00:00","slug":"how-supernovae-are-helping-uncover-the-mysteries-of-dark-energy","status":"publish","type":"post","link":"https:\/\/entertainment.runfyers.com\/index.php\/2024\/01\/25\/how-supernovae-are-helping-uncover-the-mysteries-of-dark-energy\/","title":{"rendered":"How supernovae are helping uncover the mysteries of dark energy"},"content":{"rendered":"<p> <br \/>\n<\/p>\n<div id=\"content\">\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup mb-20 font-fkroman text-22 leading-150 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-franklin [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white first-letter:float-left first-letter:mr-18 first-letter:font-polysans-mono first-letter:text-[117px] first-letter:font-medium first-letter:leading-[.72] dark:first-letter:text-franklin\">The largest component of the universe is something we know almost nothing about.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">The best and most accurate observations that cosmologists have gathered over decades show that all the matter around us, every single atom we see anywhere in the cosmos, makes up just 5 percent of all that exists. Another 27 percent is <a href=\"https:\/\/www.theverge.com\/2023\/7\/31\/23814266\/euclid-space-telescope-dark-matter-energy-european-space-agency-nasa-max-planck-institute\" target=\"_blank\" rel=\"noopener\">dark matter<\/a>, which holds galaxies together. And everything else \u2014 a staggering 68 percent of the universe \u2014 is dark energy, a force that is responsible for the expansion of the universe.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Without dark energy, the rate of expansion would be slowing down over time. But it\u2019s very clear that\u2019s not the case, and the rate of expansion is actually increasing. There must be some kind of force pushing that expansion, and that unknown force is what we call dark energy.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block md:float-left md:mr-30 md:w-[320px] lg:-ml-100\">\n<div class=\"duet--article--article-pullquote mb-20\">\n<p class=\"duet--article--dangerously-set-cms-markup relative bg-repeating-lines-dark bg-[length:1px_1.2em] pb-8 font-polysans text-28 font-medium leading-120 tracking-1 selection:bg-franklin-20  dark:bg-repeating-lines-light dark:text-white dark:selection:bg-blurple\">A staggering 68 percent of the universe is dark energy.<\/p>\n<\/div>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">It\u2019s the largest constituent of the universe, and it\u2019s a mystery. But for a certain type of scientist, that makes studying it an irresistible challenge.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">At a meeting of the American Astronomical Society earlier this month, <a href=\"https:\/\/noirlab.edu\/public\/news\/noirlab2401\/?lang\" target=\"_blank\" rel=\"noopener\">researchers presented data a decade in the making<\/a> from the largest and most uniform sample of supernovae ever collected. The data was part of the Dark Energy Survey, an international collaboration of more than 400 astronomers working together to unpick the mysteries of dark energy.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">The analysis focused on a variety of supernovae called Type 1a. These are particularly useful to astronomers because they have a highly predictable brightness, making them invaluable as mile markers that can be used to accurately measure distance. By using these supernovae to calculate the distance to far-off galaxies, scientists can measure how fast the universe is expanding and hopefully learn more about the strange stuff of dark energy.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block\">\n<div class=\"my-9\">\n<p> <cite class=\"duet--article--dangerously-set-cms-markup inline not-italic text-gray-63 dark:text-gray-bd [&amp;&gt;a:hover]:text-gray-63 [&amp;&gt;a:hover]:shadow-underline-black dark:[&amp;&gt;a:hover]:text-gray-bd dark:[&amp;&gt;a:hover]:shadow-underline-gray [&amp;&gt;a]:shadow-underline-gray-63 dark:[&amp;&gt;a]:text-gray-bd dark:[&amp;&gt;a]:shadow-underline-gray\">DES Collaboration\/NOIRLab\/NSF\/AU<\/cite><\/p>\n<\/div>\n<\/div>\n<p><h4 class=\"duet--article--dangerously-set-cms-markup duet--article--standard-heading my-20 font-polysans text-24 font-light leading-110 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple md:text-26 [&amp;&gt;a:hover]:shadow-highlight-franklin dark:[&amp;&gt;a:hover]:shadow-highlight-franklin [&amp;&gt;a]:shadow-underline-black dark:[&amp;&gt;a]:shadow-underline-white\">Subtle effects on a large scale<\/h4>\n<\/p>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Dark energy might make up a huge portion of the universe, but its effects are subtle. To detect its influence, researchers must look at huge datasets that show the movements of galaxies on a large scale. It requires very precise tools to be able to detect the kind of widespread effects that dark energy has on the movements of galaxies.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cTo make these super precise measurements, you need the best cameras and the best telescopes available, on the ground or in space,\u201d explained Maria Vincenzi of Duke University, who co-led the cosmological analysis of the DES supernova sample. \u201cBuilding these kinds of instruments is such a monumental effort that it\u2019s something that cannot be done by a single group or by the resources of a single university.\u201d<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block md:float-left md:mr-30 md:w-[320px] lg:-ml-100\">\n<div class=\"duet--article--article-pullquote mb-20\">\n<p class=\"duet--article--dangerously-set-cms-markup relative bg-repeating-lines-dark bg-[length:1px_1.2em] pb-8 font-polysans text-28 font-medium leading-120 tracking-1 selection:bg-franklin-20  dark:bg-repeating-lines-light dark:text-white dark:selection:bg-blurple\">Dark energy might make up a huge portion of the universe, but its effects are subtle.<\/p>\n<\/div>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Most previous research into dark energy using supernovae was done using a technique called spectroscopy, in which light from a supernova is split into wavelengths. By looking for the wavelengths of light that are absent, scientists can infer which wavelengths have been absorbed \u2014 which tells you the composition of an object.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">That\u2019s extremely useful for getting detailed information from an object, but it\u2019s also a very expensive and time-consuming process that requires the use of a specialist telescope such as the James Webb Space Telescope.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">The recent research took a different approach. \u201cWe tried to do things in a completely different way,\u201d Vincenzi said. They used a technique called photometry, in which they observed light from objects and tracked how the brightness changed over a period of a few weeks, producing data called a light curve.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">They then fed these light curves into a machine learning algorithm, which was trained to identify the particular supernovae they wanted \u2014 the Type 1a supernovae.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">The machine learning aspect was key because differences between the light curves of supernova types can be subtle. \u201cThe machine learning algorithm can see things that even a very well trained eye might not be able to see,\u201d Vincenzi said, as well as being much faster.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">That enabled the group to identify a huge sample of around 1,500 of these supernovae across the five-year dataset, collected from a single instrument called the Dark Energy Camera mounted on the V\u00edctor M. Blanco Telescope in Chile.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block\">\n<div class=\"my-9\">\n<p><figcaption class=\"duet--article--dangerously-set-cms-markup inline text-gray-13 dark:text-gray-e9 [&amp;&gt;a:hover]:text-black [&amp;&gt;a:hover]:shadow-underline-black dark:[&amp;&gt;a:hover]:text-gray-e9 dark:[&amp;&gt;a:hover]:shadow-underline-gray-63 [&amp;&gt;a]:shadow-underline-gray-13 dark:[&amp;&gt;a]:shadow-underline-gray-63\"><em>The V\u00edctor M. Blanco Telescope in Chile<\/em><\/figcaption><cite class=\"duet--article--dangerously-set-cms-markup inline not-italic text-gray-63 dark:text-gray-bd [&amp;&gt;a:hover]:text-gray-63 [&amp;&gt;a:hover]:shadow-underline-black dark:[&amp;&gt;a:hover]:text-gray-bd dark:[&amp;&gt;a:hover]:shadow-underline-gray [&amp;&gt;a]:shadow-underline-gray-63 dark:[&amp;&gt;a]:text-gray-bd dark:[&amp;&gt;a]:shadow-underline-gray\">CTIO\/NOIRLab\/NSF\/AURA\/D. Munizag<\/cite><\/p>\n<\/div>\n<\/div>\n<p><h4 class=\"duet--article--dangerously-set-cms-markup duet--article--standard-heading my-20 font-polysans text-24 font-light leading-110 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple md:text-26 [&amp;&gt;a:hover]:shadow-highlight-franklin dark:[&amp;&gt;a:hover]:shadow-highlight-franklin [&amp;&gt;a]:shadow-underline-black dark:[&amp;&gt;a]:shadow-underline-white\">A property of space itself<\/h4>\n<\/p>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">With this impressive dataset, the researchers were able to understand more about the expansion of the universe than ever before, and the findings support a widely held model of the universe that is truly bizarre.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">The weirdness is all about dark energy\u2019s density. To understand why that\u2019s important, it helps to start off by thinking about something more familiar: matter.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cAs the universe expands, the volume of the universe is increasing. But the amount of matter is not. It\u2019s a constant of total matter. So if the volume is increasing and the matter is constant, the density will decrease,\u201d explained Dillon Brout of Boston University, who co-led the cosmological analysis.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block md:float-left md:mr-30 md:w-[320px] lg:-ml-100\">\n<div class=\"duet--article--article-pullquote mb-20\">\n<p class=\"duet--article--dangerously-set-cms-markup relative bg-repeating-lines-dark bg-[length:1px_1.2em] pb-8 font-polysans text-28 font-medium leading-120 tracking-1 selection:bg-franklin-20  dark:bg-repeating-lines-light dark:text-white dark:selection:bg-blurple\">\u201cAs the universe expands, the volume of the universe is increasing. But the amount of matter is not.\u201d<\/p>\n<\/div>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">So far, so good. But dark energy isn\u2019t like that \u2014 it has constant density over time. \u201cAs the universe expands, the density does not decrease. You get a correspondingly larger total amount of dark energy,\u201d Brout said.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">That means that dark energy seems to be a property of space itself, which is why it is also sometimes known as the energy of the vacuum. \u201cIf you get more space, you get more dark energy. If the universe increases in size, you get just the right amount of dark energy, because it\u2019s a property of space itself,\u201d Brout said.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Dark energy is unlike anything else we know of in nature, so some people are skeptical of the theory and believe there must be some other explanation for the rate of the expansion of the universe, such as something about general relativity being wrong or incomplete.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">But increasingly, cosmologists agree that this theory of dark energy\u2019s constant density over time, called Lambda cold dark matter, is the best explanation we have for the observations we\u2019ve made. The new research doesn\u2019t definitively prove this theory is true, but it is consistent with it.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cThis has been mind blowing for everybody who works in the field for the last twenty years,\u201d Vincenzi said. \u201cBecause it\u2019s a form of energy that\u2019s very difficult to reconcile with any previous knowledge of energy and the forces we are used to thinking about in physics.\u201d<\/p>\n<\/div>\n<p><h4 class=\"duet--article--dangerously-set-cms-markup duet--article--standard-heading my-20 font-polysans text-24 font-light leading-110 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple md:text-26 [&amp;&gt;a:hover]:shadow-highlight-franklin dark:[&amp;&gt;a:hover]:shadow-highlight-franklin [&amp;&gt;a]:shadow-underline-black dark:[&amp;&gt;a]:shadow-underline-white\">Cosmological tug of war<\/h4>\n<\/p>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Dark energy can be thought of as one side of a cosmological coin, with dark matter being the other. The two forces counteract each other: one pushing things apart and the other pulling them together.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cMatter and dark matter influence the universe with their gravity. So dark matter has the tendency to slow the expansion of the universe, whereas dark energy has the tendency to speed it up,\u201d Brout said. \u201cSo it\u2019s really like a tug of war between the dark matter with the pull of gravity, and the repulsiveness of dark energy.\u201d<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component clear-both block md:float-left md:mr-30 md:w-[320px] lg:-ml-100\">\n<div class=\"duet--article--article-pullquote mb-20\">\n<p class=\"duet--article--dangerously-set-cms-markup relative bg-repeating-lines-dark bg-[length:1px_1.2em] pb-8 font-polysans text-28 font-medium leading-120 tracking-1 selection:bg-franklin-20  dark:bg-repeating-lines-light dark:text-white dark:selection:bg-blurple\">\u201cThis has been mind blowing for everybody who works in the field for the last twenty years.\u201d<\/p>\n<\/div>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">This model means that as time passes and the universe expands, there is more and more dark energy. At earlier points in the universe\u2019s history, its physics was dominated by dark matter because its size was smaller and matter\u2019s density was higher. As the universe has gotten bigger, dark energy has come to dominate.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cDark energy dominates in the parts of the universe that are mostly empty, over the vast distances between galaxies which are mostly filled with empty space. In the regions of the galaxy that are filled with a lot more matter or dark matter, like in a galaxy or in the solar system, we don\u2019t feel or see the effects of dark energy,\u201d Brout explained.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">That\u2019s part of the reason that dark energy is so difficult to study: researchers need to look at the large-scale movements of galaxies to see its effects.<\/p>\n<\/div>\n<p><h4 class=\"duet--article--dangerously-set-cms-markup duet--article--standard-heading my-20 font-polysans text-24 font-light leading-110 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple md:text-26 [&amp;&gt;a:hover]:shadow-highlight-franklin dark:[&amp;&gt;a:hover]:shadow-highlight-franklin [&amp;&gt;a]:shadow-underline-black dark:[&amp;&gt;a]:shadow-underline-white\">A gaping discrepancy<\/h4>\n<\/p>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">If all of this seems counterintuitive and strange, then buckle up, because there\u2019s even more weirdness to be uncovered in this story.\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">Even though scientists know that there\u2019s an awful lot of dark energy in the universe, its effects are relatively small. Even though it\u2019s driving the expansion of the universe, which is hardly inconsequential, there is a long-standing problem in cosmology where its effects are weaker than theory predicts they should be \u2014 <em>much<\/em> weaker.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">In fact, the predictions of quantum mechanics, the most widely held theory of how matter operates at the atomic scale, state that dark energy should be orders of magnitude stronger than it is.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">\u201cIf dark energy is the energy of the vacuum, the value that we find is 120 orders of magnitude off the theoretical expectation from quantum mechanics. And that\u2019s just bonkers,\u201d Brout said. \u201cIt\u2019s sometimes called the largest discrepancy between theory and observations in all of science.\u201d<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">But if dark energy were as powerful as quantum mechanics predicts, then it would have scattered material in the early universe, <a href=\"https:\/\/www.science.org\/content\/article\/dark-energy-s-weakness-may-be-why-supernovae-didn-t-kill-us-all\" target=\"_blank\" rel=\"noopener\">preventing early galaxies from forming<\/a>. The development of life as we know it is arguably dependent on the relative weakness of dark energy.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">This discrepancy in the apparent value of the cosmological constant, which is part of general relativity, is a major question for cosmology. It has even been described as physics\u2019 \u201c<a href=\"https:\/\/www.scientificamerican.com\/article\/the-cosmological-constant-is-physics-most-embarrassing-problem\/\" target=\"_blank\" rel=\"noopener\">most embarrassing problem<\/a>.\u201d\u00a0<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white\">For dark energy researchers, however, that bewildering discrepancy is what makes the subject so compelling and critical to study.<\/p>\n<\/div>\n<div class=\"duet--article--article-body-component\">\n<p class=\"duet--article--dangerously-set-cms-markup duet--article--standard-paragraph mb-20 font-fkroman text-18 leading-160 -tracking-1 selection:bg-franklin-20 dark:text-white dark:selection:bg-blurple [&amp;_a:hover]:shadow-highlight-franklin dark:[&amp;_a:hover]:shadow-highlight-blurple [&amp;_a]:shadow-underline-black dark:[&amp;_a]:shadow-underline-white after:absolute after:ml-8 after:mt-2 after:content-[url(\/icons\/endmark.svg)]\">\u201cWe\u2019re measuring dark matter and dark energy, which make up 95 percent of the universe,\u201d Brout said. \u201cAnd boy, if we don\u2019t understand 95 percent of the universe, we have to go looking and try to understand it.\u201d<\/p>\n<\/div>\n<\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/www.theverge.com\/24049140\/dark-energy-universe-expand-mystery-survey-supernova\" target=\"_blank\" rel=\"noopener\">Source link <\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>The largest component of the universe is something we know almost nothing about.\u00a0 The best and most accurate observations that cosmologists have gathered over decades show that all the matter around us, every single atom we see anywhere in the cosmos, makes up just 5 percent of all that exists. Another 27 percent is dark [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":71011,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[14],"tags":[],"class_list":{"0":"post-71010","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-tech"},"_links":{"self":[{"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/posts\/71010","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/comments?post=71010"}],"version-history":[{"count":0,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/posts\/71010\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/media\/71011"}],"wp:attachment":[{"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/media?parent=71010"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/categories?post=71010"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/entertainment.runfyers.com\/index.php\/wp-json\/wp\/v2\/tags?post=71010"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}