Space Industry and Business News  
Super Explosion In 16th Century Caught By Subaru

The view of the light echoes from Tycho's supernova. The optical light arrived at Earth in 1572 (sky blue arrow). Optical light was scattered by dust cloud around the supernova arrived in 2008 (yellow arrows). Since the emitting regions were apparently shifted from 23 August 2008 to September 24, the optical lights were confirmed as light echoes.
by Staff Writers
Hilo HI (SPX) Dec 04, 2008
When a person looks up into the nighttime sky, they see stars, planets, and galaxies across a sea of darkness. The movements of planets and seasonal variations to the constellations have been relatively the same for thousands of years.

What if the sky changed overnight and a new star brighter than anything else appeared? Would it be noticed if it happened in the 16th century?

A few months ago astronomers at the Subaru Telescope went back in time and observed light from a "new star" that originally was seen on 11 November 1572 by astronomer Tycho Brahe and others. What Brahe observed as a bright star in the constellation Cassiopeia, outshining even Venus, was actually a rare supernova event where the violent death of a star sends out an extremely bright outburst of energy.

He studied the brightness and color of the "new star" until March 1572 when it faded from view. The remains of this milestone event are seen today as Tycho's supernova remnant (see Reference Figure).

A team of international astronomers recently completed a study at Subaru that focused on 'light echoes' from Tycho's supernova to determine its origin and exact type, and relate that information to what we see from its remnant today.

A 'light echo' is light from the original supernova event that bounces off dust particles in surrounding interstellar clouds and reaches Earth many years after the direct light passes by; in this case, 436 years ago. This same team used similar methods to uncover the origin of supernova remnant Cassiopeia A in 2007.

Lead project astronomer at Subaru, Dr. Tomonori Usuda, said "using light echoes in supernova remnants is time-travelling in a way, in that it allows us to go back hundreds of years to observe the first light from a supernova event. We got to relive a significant historical moment and see it as famed astronomer Tycho Brahe did hundreds of years ago. More importantly, we get to see how a supernova in our own galaxy behaves from its origin."

On 24 September 2008, using the Faint Object Camera and Spectrograph (FOCAS) instrument at Subaru, the light echoes were broken apart into the signatures of atoms (spectra) present when Supernova 1572 exploded, bearing all the information about the nature of the original blast.

The results showed clear absorption of once-ionized silicon and absence of the hydrogen H-alpha emission. The findings were very typical of a Type Ia supernova observed at maximum brightness of its outburst.

During the study, the astronomers tested theories of the explosion mechanism and the nature of the supernova progenitor.

For Type Ia supernovae, a white dwarf star in a close binary system is the typical source, and as the gas of the companion star accumulates onto the white dwarf, the white dwarf is progressively compressed, and eventually sets off a runaway nuclear reaction inside that eventually leads to a cataclysmic supernova outburst.

However, as Type Ia supernovae with luminosity brighter/fainter than standard ones have been reported recently, the understanding of the supernova outburst mechanism has come under debate. In order to explain the diversity of the Type Ia supernovae, the Subaru team studied the outburst mechanisms in detail.

What they discovered is that Supernova 1572 shows indications of an aspherical/nonsymmetrical explosion, which, in turn, puts limits on explosion models for future studies.

In addition, follow-up comparisons with template spectra of Type Ia supernovae found outside our Galaxy shows that Tycho's supernova belongs to the majority class of Normal Type Ia, and, as such, is now the first confirmed and precisely classified supernova in our galaxy.

This finding is significant because Type Ia supernovae are the primary source of heavy elements in the Universe, and play an important role as cosmological distance indicators, serving as 'standard candles' because the level of the luminosity is always the same for this type of supernova.

This observational study at Subaru established how light echoes can be used in a spectroscopic manner to study supernovae outburst that occurred hundreds of years ago. The light echoes, when observed at different position angles from the source, enabled the team to look at the supernova in a three dimensional view.

For the future, this 3D aspect will accelerate the study of the outburst mechanism of supernova based on their spatial structure, which, to date, has been impossible with distant supernovae in galaxies outside the Milky Way.

Related Links
Subaru Telescope
Space Telescope News and Technology at Skynightly.com



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


Highlights From Akari Infrared Space Telescope
Paris, France (ESA) Nov 20, 2008
The Akari infrared surveyor, a Japanese Aerospace Exploration Agency mission with ESA participation, has returned a host of new results. From splashes in cosmic rivers of dust and gas to supernova remnants, the mission has been uncovering secrets of the cold and dusty Universe.







  • Yahoo up on reports of new takeover bid
  • NASA Tests First Deep-Space Internet
  • Wired ... but frustrated
  • Qualcomm to link people to Internet without computers

  • Russia To Launch Two Telecoms Satellites In February 2009
  • Russia Launches New Space Freighter To ISS
  • South Korea To Launch Maritime Weather Satellite Next Year
  • Sea Launch Partners With Intelsat On Multi-Launch Agreement

  • NASA studies pilot cognition
  • China postpones talks with Airbus: spokesman
  • Two China airlines to get govt aid: state media
  • China's air show saw four bln dollars in deals: report

  • Boeing Develops Common Software To Reduce Risk For TSAT
  • USAF Tests Battlespace Information Solution On AC-130 Gunship
  • Harris Awarded Contract For USAF Satellite Control Network Program
  • LockMart Delivers Key Hardware For US Navy's Mobile User Objective System

  • ESA Satellites Flying In Formation
  • Kazakhstan Admits Losing Satellite
  • Astronomers hope to see orbiting tool bag
  • Please don't litter space, scientists say

  • Berndt Feuerbacher New President Of IAU
  • Orbital Appoints Frank Culbertson And Mark Pieczynski To Management
  • Chris Smith Named Director Of Cerro Tololo Inter-American Observatory
  • AsiaSat Appoints New General Manager China

  • GIS Development Gives Award To Institute Of Photogrammetry
  • UNESCO Signs Partnership With JAXA
  • NASA Selects NOAA GOES-R Series Spacecraft Contractor
  • Ball Aerospace Completes CDR For Landsat's Operational Land Imager

  • Garmin Aids AA Fleet Rapid Response
  • Networks In Motion Integrates INRIX Total Fusion Traffic
  • Trimble Introduces Juno Series Of Economical GPS Handhelds
  • Spirent Communications Delivers Over-The-Air A-GPS Test Solution

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. 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.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement