Rare space experiment gives clues about the fundamental structure of the universe
A physics experiment using a super-fast explosion in a galaxy 7.3 billion light-years away has given scientists rare experimental evidence about the fundamental structure of space and time. The experiment was performed by a team that includes astrophysicists at Penn State University, who used NASA's Fermi Gamma Ray Space Telescope to study particles from the explosion moving at nearly the speed of light. The experiment confirmed aspects of Einstein's theories of gravity, which unite space and time in the concept of space-time. The team's research is published in the current early-online edition of the journal Nature and will be published at a later date in the print edition. "The next major goal is to fuse quantum mechanics with gravity into a single quantum gravity theory," said Peter Meszaros, the Holder of the Eberly Family Chair in Astronomy and Astrophysics at Penn State, a Professor of Physics there, and a member of the team that did the physics experiment with the Fermi telescope. "Physicists would like to replace Einstein's vision of gravity -- as expressed in his relativity theories -- with something that handles all fundamental forces," said Peter Michelson, principal investigator of Fermi's Large Area Telescope, at Stanford University. Scientists have constructed many models to fit their ideas for the new theories, but they have few ways to test these models with physical experiments.
The opportunity to test these models occurred on 9 May 2009 at 8:23 p.m. U. S. Eastern time, when Fermi and other satellites detected the "short" gamma ray burst, designated GRB 090510, in the act of ejecting particles at 99.99995 percent of the speed of light. Astronomers say this type of explosion likely occurred in the distant galaxy during an annihilating collision between neutron stars.
Many approaches to new theories of quantum gravity picture space-time as having a shifting, frothy structure at physical scales trillions of times smaller than an electron. Some models predict that such a foamy structure would cause higher-energy gamma rays to move slightly more slowly than photons at lower energy. "Such models would violate Einstein's postulate that all electromagnetic radiation -- radio waves, infrared rays, visible light, X-rays, and gamma rays -- travel through a vacuum at the same speed," said Meszaros. "But different versions of quantum gravity predict different degrees of violation of this postulate, and we need to separate the wheat from the chaff."
Of the many gamma-ray photons detected by Fermi from the 2.1-second burst, two had energies differing by a million times. Yet after traveling some seven billion years, the pair of photons arrived just nine-tenths of a second apart. "This measurement eliminates any approach to a new theory of gravity that predicts a strong energy-dependent change in the speed of light," Michelson said. The long-distance experiment showed that "To one part in 100 million billion, these two photons traveled at the same speed. "Einstein still rules," Michelson said.
As a result of the new space experiment, Meszaros further explained, "Any viable theory of quantum gravity must be one that predicts either a weaker violation of the speed-of-light constancy than that which we measured, or none at all."
Source: Penn State
Related
- Fermi telescope caps its first year with a glimpse of space-timeWed, 28 Oct 2009, 15:17:46 EDT
- Scientists discover that protons partner with neutrons more often than with other protonsWed, 18 Jun 2008, 12:42:21 EDT
- News from space for osteoporosis patients on earth: resistance is not futileMon, 30 Mar 2009, 10:30:47 EDT
- Radio-telescope measurements advance frontier physicsTue, 1 Sep 2009, 12:57:52 EDT
- Experiments show 'artificial gravity' can prevent muscle loss in spaceWed, 22 Jul 2009, 16:36:34 EDT
Other sources
- Rare space experiment gives clues about the structure of the universefrom PhysorgTue, 3 Nov 2009, 15:42:04 EST
- Rare space experiment gives clues about the fundamental structure of the universefrom Science CentricTue, 3 Nov 2009, 5:14:14 EST
Latest Science Newsletter
Get the latest and most popular science news articles of the week in your Inbox!Learn more about
Popular science news articles
- It's a gas: New discovery may lead to heartier, high-yielding plants
- Promoting healthy skepticism in the news: Helping journalists get it right
- Elsevier celebrates the 20th anniversary of the UN Convention for the Rights of the Child
- Small nanoparticles bring big improvement to medical imaging
- Chest ultrasound as useful as chest CT in the eval of pediatric patients with complicated pneumonia
- NIST demonstrates 'universal' programmable quantum processor
- Transcendental Meditation helped heart disease patients lower cardiac disease risks by 50 percent
- Nanoparticles used in common household items caused genetic damage in mice
- Boehringer Ingelheim announces Phase III data of flibanserin in pre-menopausal women with HSDD
- Heart disease found in Egyptian mummies
- African desert rift confirmed as new ocean in the making
- 1 shot of gene therapy and children with congenital blindness can now see
- Scientists discover influenza's Achilles heel: Antioxidants
- Cleanliness is next to godliness: New research shows clean smells promote moral behavior
- New evidence that dark chocolate helps ease emotional stress
No popular news yet
- Nanoparticles used in common household items caused genetic damage in mice
- Treatment with folic acid, vitamin B12 associated with increased risk of cancer, death
- New study links vitamin D deficiency to cardiovascular disease and death
- Continuous chest compression-CPR improved cardiac arrest survival in Arizona
- Largest gene study of childhood IBD identifies 5 new genes
