Images by Date
Images by Category
Solar System
Stars
Exoplanets
White Dwarfs
Supernovas
Neutron Stars
Black Holes
Milky Way Galaxy
Normal Galaxies
Quasars
Galaxy Clusters
Cosmology/Deep Field
Miscellaneous
Images by Interest
Space Scoop for Kids
4K JPG
Multiwavelength
Sky Map
Constellations
Photo Blog
Top Rated Images
Image Handouts
Desktops
Fits Files
Image Tutorials
Photo Album Tutorial
False Color
Cosmic Distance
Look-Back Time
Scale & Distance
Angular Measurement
Images & Processing
AVM/Metadata
Image Use Policy
Web Shortcuts
Chandra Blog
RSS Feed
Chronicle
Email Newsletter
News & Noteworthy
Image Use Policy
Questions & Answers
Glossary of Terms
Download Guide
Get Adobe Reader
Astronomers Find Dark Energy May Vary Over Time Animations
A Tour of the Dark Energy Quasar Survey
(Credit: NASA/CXC/A. Hobart)
[Runtime: 02:53]

With closed-captions (at YouTube)

A pair of astronomers has found evidence that dark energy may vary over time. If confirmed, this result could force astronomers to re-examine their fundamental understanding of the history and structure of the Universe.

This new study uses X-ray data from NASA's Chandra X-ray Observatory and ESA's XMM-Newton along with optical and infrared data from the Sloan Digital Sky Survey.

First discovered about 20 years ago by measuring the distances to exploded stars called supernovas, dark energy is a proposed type of force, or energy, that permeates all space and causes the expansion of the Universe to accelerate. While the exact nature of dark energy is unknown, many astrophysicists think it is constant throughout space and time.

The latest result involves the development of a new method to determine distances to quasars, rapidly growing black holes in the distant Universe that shine extremely brightly. This method, which used data on about 1,600 quasars, allows astronomers to determine distances to quasars that are much farther away from Earth than the observed supernovas.

The astronomers observed quasars back to just a billion years after the Big Bang, and found that the Universe's expansion rate up to the present day was faster than was expected. This could mean dark energy is getting stronger as the cosmos grows older.

This is a new technique, so the researchers took extra steps to show that this method gives us reliable results. They showed that results from our technique match up with those from supernova measurements over the last 9 billion years, giving us confidence that our results are reliable at even earlier times.

Still, more research is needed to confirm this exciting result. The researchers plan to use a large sample of Chandra observations of quasars at a wide range of distances and apply this same technique.



A Quick Look at the Dark Energy Quasar Survey
(Credit: NASA/CXC/A. Hobart)
[Runtime: 01:08]

The nature of dark energy, a force or energy that accelerates the Universe's expansion, is one of the biggest mysteries in science.

Scientists discovered dark energy 20 years ago when they studied the distances of supernovas.

Since then, scientists have been trying to figure out what dark energy is and how it behaves.

A new study using X-ray data from the Chandra X-ray Observatory and XMM-Newton and SDSS data may be a step in that direction.

Using quasars — rapidly growing black holes — researchers were able to track dark energy's effect back to just about one billion years after the Big Bang.

If confirmed, this result shows that dark energy may vary over time, giving an important clue as to what it is and how it affects the Universe.




Return to Astronomers Find Dark Energy May Vary Over Time (January 28, 2019)