The Japan Times - Scientists find oldest Martian meteorite's original home

EUR -
AED 4.236833
AFN 76.142197
ALL 93.45107
AMD 420.704816
AOA 1059.063247
ARS 1713.99192
AUD 1.649976
AWG 2.076594
AZN 1.965807
BAM 1.955822
BBD 2.316627
BDT 142.031626
BHD 0.433705
BIF 3413.239071
BMD 1.153663
BND 1.476217
BOB 13.658156
BRL 5.861191
BSD 1.150213
BTN 109.651255
BWP 15.68318
BYN 3.345938
BYR 22611.798836
BZD 2.313326
CAD 1.617379
CDF 2624.584211
CHF 0.93183
CLF 0.027184
CLP 1073.37276
CNY 7.788731
CNH 7.790705
COP 3653.005322
CRC 522.40598
CUC 1.153663
CUP 30.572075
CVE 110.266262
CZK 24.240891
DJF 204.822345
DKK 7.480664
DOP 66.730764
DZD 153.303755
EGP 59.017676
ERN 17.304948
ETB 183.804404
FJD 2.554153
FKP 0.856626
GBP 0.855675
GEL 3.016876
GGP 0.856626
GHS 13.446154
GIP 0.856626
GMD 84.798688
GNF 10097.115581
GTQ 8.7761
GYD 240.602754
HKD 9.047262
HNL 30.819353
HRK 7.538386
HTG 150.391722
HUF 365.192535
IDR 20799.39394
ILS 3.533613
IMP 0.856626
INR 110.048515
IQD 1506.817248
IRR 1586431.11648
ISK 142.062532
JEP 0.856626
JMD 182.092084
JOD 0.817993
JPY 181.627012
KES 148.781703
KGS 100.888291
KHR 4660.799756
KMF 492.614593
KRW 1664.690302
KWD 0.356644
KYD 0.958511
KZT 545.026239
LAK 26048.298174
LBP 103004.479089
LKR 386.12442
LRD 207.612377
LSL 19.024918
LTL 3.406468
LVL 0.69784
LYD 7.359084
MAD 10.744823
MDL 20.10023
MGA 4919.056308
MKD 61.525704
MMK 2422.354323
MNT 4147.524662
MOP 9.292006
MRU 46.226529
MUR 54.222569
MVR 17.836069
MWK 1994.42283
MXN 20.013177
MYR 4.712949
MZN 73.731051
NAD 19.024918
NGN 1574.012366
NIO 42.330485
NOK 10.926464
NPR 175.442008
NZD 1.961512
OMR 0.443645
PAB 1.150213
PEN 3.898045
PGK 5.150059
PHP 70.667684
PKR 319.439457
PLN 4.312336
PYG 6858.078504
QAR 4.204648
RON 5.247557
RSD 117.498334
RUB 91.443047
RWF 1688.519328
SAR 4.320672
SBD 9.322873
SCR 15.583178
SDG 692.198315
SEK 10.985993
SGD 1.479693
SLE 28.499711
SOS 657.307524
SRD 43.587131
STD 23878.499126
STN 24.50028
SVC 10.064115
SZL 19.022218
THB 38.676603
TJS 10.616322
TMT 4.049358
TND 3.381339
TRY 54.813428
TTD 7.810089
TWD 37.273824
TZS 3047.993231
UAH 51.336988
UGX 4319.04944
USD 1.153663
UYU 46.28053
UZS 13768.157604
VES 860.282504
VND 30341.919148
VUV 137.643052
WST 3.154711
XAF 655.964509
XAG 0.020031
XAU 0.000285
XCD 3.117833
XCG 2.072924
XDR 0.815809
XOF 655.964509
XPF 119.331742
YER 274.922082
ZAR 19.102044
ZMK 10384.357384
ZMW 21.606247
ZWL 371.479082
  • CMSC

    0.0300

    21.84

    +0.14%

  • AZN

    -1.7000

    169.64

    -1%

  • RBGPF

    0.0000

    69.21

    0%

  • RIO

    -0.3300

    96.85

    -0.34%

  • RYCEF

    -0.3100

    19.55

    -1.59%

  • NGG

    -0.4200

    79.97

    -0.53%

  • BTI

    -1.0400

    60.65

    -1.71%

  • GSK

    -0.3800

    51.69

    -0.74%

  • BCE

    -0.0200

    21.68

    -0.09%

  • BP

    1.0000

    45.22

    +2.21%

  • CMSD

    0.0900

    22.11

    +0.41%

  • VOD

    -0.3600

    15.78

    -2.28%

  • BCC

    1.0000

    76.38

    +1.31%

  • RELX

    -1.1900

    35.42

    -3.36%

  • JRI

    0.0900

    12.96

    +0.69%

Scientists find oldest Martian meteorite's original home
Scientists find oldest Martian meteorite's original home / Photo: - - NASA/AFP/File

Scientists find oldest Martian meteorite's original home

Scientists announced Tuesday they had found the crater from which the oldest known Martian meteorite was originally blasted towards Earth, a discovery that could provide clues into how our own planet was formed.

Text size:

The meteorite NWA 7034, nicknamed Black Beauty, has fascinated geologists since it was discovered in the Sahara Desert in 2011.

It fits easily in the hand, weighing just over 300 grams (10.6 ounces), and contains a mix of materials including zircons, which date back nearly 4.5 billion years.

"That makes it one of the oldest rocks studied in the history of geology," Sylvain Bouley, a planetary scientist at France's Paris-Saclay University, told AFP.

Its journey dates back to the solar system's infancy, "about 80 million years after the planets began forming", said Bouley, who co-authored a new study on the meteorite.

Tectonic plates long ago covered up Earth's ancient crust, meaning that "we have lost this primitive history of our planet", Bouley said.

But Black Beauty could offer "an open book on a planet's first moments", he added.

To open that book, a team of researchers at Australia's Curtin University set out to find the meteorite's original home on Mars.

They knew that it was likely an asteroid hitting the red planet that sent Black Beauty shooting up into space.

The impact "had enough force to eject the rocks at very high speed -- more than five kilometres (three miles) a second -- to escape the Martian gravity", Curtin's Anthony Lagain, the lead author of the study in Nature Communications, told AFP.

Such a crater would have to be massive -- at least three kilometres in diameter.

The problem? The pockmarked surface of Mars has around 80,000 craters at least that big.

- Following the clues -

But the researchers had a clue: by measuring Black Beauty's exposure to cosmic rays, they knew it was dislodged from its first home around five million years ago.

"So, we were looking for a crater that was very young and large," Lagain said.

Another clue was that its composition showed it had suddenly heated up around 1.5 million years ago -- likely by the impact of a second asteroid.

The team then created an algorithm and used a supercomputer to trawl through images of 90 million craters taken by a NASA satellite.

That narrowed it down to 19 craters, allowing the researchers to rule out the remaining suspects.

They found that Black Beauty was dug up from its first home by an asteroid that struck around 1.5 billion years ago, forming the 40-kilometre Khujirt crater.

Then a few million years ago, another asteroid hit not far away, creating the 10-kilometre Karratha crater and shooting the Black Beauty towards Earth.

The region in Mars' southern hemisphere is rich in the elements potassium and thorium, just like Black Beauty.

Another factor was that Black Beauty is the only Martian meteorite that is highly magnetised.

"The region where Karratha was found is the most magnetised on Mars," Lagain said.

Known as the Terra Cimmeria—Sirenum province, it is "a relic of the early crustal processes on Mars, and thus, a region of high interest for future missions," the study said.

Bouley pointed to a "bias" in the currently planned missions to Mars in favour of searching for signs of water and life.

But to understand how planets first form would answer some fundamental questions, Lagain said, including "how Earth became such an exceptional planet in the Universe".

H.Takahashi--JT