Subscribe free to our newsletters via your
. Military Space News .




STELLAR CHEMISTRY
Looking for Life by the Light of Dying Stars
by Staff Writers
Tel Aviv, Israel (SPX) Apr 30, 2013


The unique characteristics of white dwarfs could make these planets easier to spot than planets orbiting normal stars, the researchers have shown. Their atmospheres can be detected and analyzed when a star dims as an orbiting planet crosses in front of it. As the background starlight shines through the planet's atmosphere, elements in the atmosphere will absorb some of the starlight, leaving chemical clues of their presence -- clues that can then be detected from the JWST.

Because it has no source of energy, a dead star -- known as a white dwarf -- will eventually cool down and fade away. But circumstantial evidence suggests that white dwarfs can still support habitable planets, says Prof. Dan Maoz of Tel Aviv University's School of Physics and Astronomy.

Now Prof. Maoz and Prof. Avi Loeb, Director of Harvard University's Institute for Theory and Computation and a Sackler Professor by Special Appointment at TAU, have shown that, using advanced technology to become available within the next decade, it should be possible to detect biomarkers surrounding these planets -- including oxygen and methane -- that indicate the presence of life.

Published in the Monthly Notices of the Royal Astronomical Society, the researchers' "simulated spectrum" demonstrates that the James Webb Space Telescope (JWST), set to be launched by NASA in 2018, will be capable of detecting oxygen and water in the atmosphere of an Earth-like planet orbiting a white dwarf after only a few hours of observation time -- much more easily than for an Earth-like planet orbiting a Sun-like star.

Their collaboration is made possible by the Harvard TAU Astronomy Initiative, recently endowed by Dr. Raymond and Beverly Sackler.

Faint Light, Clear Signals
"In the quest for extraterrestrial biological signatures, the first stars we study should be white dwarfs," said Prof. Loeb. Prof. Maoz agrees, noting that if "all the conditions are right, we'll be able to detect signs of life" on planets orbiting white dwarf stars using the much-anticipated JWST.

An abundance of heavy elements already observed on the surface of white dwarfs suggest rocky planets orbit a significant fraction of them. The researchers estimate that a survey of 500 of the closest white dwarfs could spot one or more habitable planets.

The unique characteristics of white dwarfs could make these planets easier to spot than planets orbiting normal stars, the researchers have shown. Their atmospheres can be detected and analyzed when a star dims as an orbiting planet crosses in front of it. As the background starlight shines through the planet's atmosphere, elements in the atmosphere will absorb some of the starlight, leaving chemical clues of their presence -- clues that can then be detected from the JWST.

When an Earth-like planet orbits a normal star, "the difficulty lies in the extreme faintness of the signal, which is hidden in the glare of the 'parent' star," Prof. Maoz says. "The novelty of our idea is that, if the parent star is a white dwarf, whose size is comparable to that of an Earth-sized planet, that glare is greatly reduced, and we can now realistically contemplate seeing the oxygen biomarker."

In order to estimate the kind of data that the JWST will be able to see, the researchers created a "synthetic spectrum," which replicates that of an inhabited planet similar to Earth orbiting a white dwarf. They demonstrated that the telescope should be able to pick up signs of oxygen and water, if they exist on the planet.

A Critical Sign of Life
The presence of oxygen biomarkers would be the most critical signal of the presence of life on extraterrestrial planets. Earth's atmosphere, for example, is 21 percent oxygen, and this is entirely produced by our planet's plant life as a result of photosynthesis. Without the existence of plants, an atmosphere would be entirely devoid of oxygen.

The JWST will be ideal for hunting out signs of life on extraterrestrial planets because it is designed to look into the infrared region of the light spectrum, where such biomarkers are prominent. In addition, as a space-based telescope, it will be able to analyze the atmospheres of Earth-like planets outside our solar system without weeding out the similar signatures of Earth's own atmosphere.

Monthly Notices of the Royal Astronomical Society: preprint

.


Related Links
American Friends of Tel Aviv University
Stellar Chemistry, The Universe And All Within It






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








STELLAR CHEMISTRY
Bold Move Forward in Molecular Analyses
Berkeley CA (SPX) Apr 29, 2013
A dramatic leap forward in the ability of scientists to study the structural states of macromolecules such as proteins and nanoparticles in solution has been achieved by a pair of researchers with the U.S. Department of Energy (DOE)'s Lawrence Berkeley National Laboratory (Berkeley Lab). The researchers have developed a new set of metrics for analyzing data acquired via small angle scatter ... read more


STELLAR CHEMISTRY
U.S. seeks $220 million for Israel missile defense

Pentagon requests more funding for Israel's 'Iron Dome'

Lockheed Martin PAC-3 Missile Intercepts and Destroys Tactical Ballistic Missile in New Test

Japan's missile defence plan: some facts

STELLAR CHEMISTRY
Lockheed Martin's Nemesis Missile Scores 3-For-3 in Flight Tests

Guam heightens alert level after N. Korea threats

US warns N. Korea ahead of expected missile launch

Raytheon demonstrates new Joint Standoff Weapon Extended Range integrated fuel system

STELLAR CHEMISTRY
Outside View: Drones: Say it with figures

ESA-EDA Flight Demonstration On Remotely Piloted Aircraft Systems Insertion Into Civil Airspace

Israel builds up its war robot industry

Israel downs Lebanon drone off northern coast

STELLAR CHEMISTRY
Astrium's secure milsatcoms now cover the world

Gilat to Equip IDF with SatTrooper-1000 Military Manpack

General Dynamics' WIN-T Increment 2, Soldiers' "On-the-Move" Network, Advances as 10th Mountain Division Trains for Deployment

Lockheed Martin Awarded Contract to Modernize U.S. Joint Theater Air Operations System

STELLAR CHEMISTRY
Elbit To Supply African Nation With Wise Intelligence Technology System

Few women opt for frontline combat roles in Australia

Raytheon contracted for Miniature Air Launched Decoy and Jammer units

Northrop Grumman launches CUTLASS, Next Generation Unmanned Ground Vehicle

STELLAR CHEMISTRY
China clamps down on abuses by 'military' drivers

Crisis-hit France to cut armed forces by 10 percent

France picks up 707 million euros for 2.1% stake in EADS

Dutch civil servant jailed for spying for Russia

STELLAR CHEMISTRY
Philippines accuses China of 'de facto occupation'

China military planes flew close to disputed isles: report

Disputed islands covered by US-Japan accord: Hagel

India PM says border dispute with China can be solved

STELLAR CHEMISTRY
Nanowires grown on graphene have surprising structure

UNL team's discovery yields supertough, strong nanofibers

Scientists image nanoparticles in action

Scientists see nanoparticles form larger structures in real time




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement