Zürcher Nachrichten - It's raining diamonds across the universe, research suggests

EUR -
AED 4.237681
AFN 75.575697
ALL 92.940333
AMD 421.656142
AOA 1058.122213
ARS 1728.956202
AUD 1.633787
AWG 2.077011
AZN 1.945226
BAM 1.955597
BBD 2.323358
BDT 142.405188
BHD 0.434964
BIF 3448.416033
BMD 1.153895
BND 1.477446
BOB 13.698575
BRL 5.892632
BSD 1.15348
BTN 110.034939
BWP 15.57038
BYN 3.419918
BYR 22616.341608
BZD 2.320009
CAD 1.608143
CDF 2619.917771
CHF 0.935353
CLF 0.026801
CLP 1054.82155
CNY 7.786026
CNH 7.783968
COP 3623.980269
CRC 523.056928
CUC 1.153895
CUP 30.578217
CVE 110.253532
CZK 24.246391
DJF 205.418634
DKK 7.475866
DOP 67.263004
DZD 153.32836
EGP 57.978842
ERN 17.308425
ETB 186.588492
FJD 2.551207
FKP 0.853163
GBP 0.854863
GEL 3.011187
GGP 0.853163
GHS 13.571588
GIP 0.853163
GMD 84.816206
GNF 10129.946354
GTQ 8.800085
GYD 241.584872
HKD 9.053789
HNL 30.918784
HRK 7.535739
HTG 150.824312
HUF 364.485455
IDR 20573.947493
ILS 3.461731
IMP 0.853163
INR 110.028559
IQD 1511.142822
IRR 1586288.276314
ISK 142.206313
JEP 0.853163
JMD 182.501018
JOD 0.818185
JPY 183.741653
KES 149.210113
KGS 100.907683
KHR 4673.513894
KMF 491.559225
KRW 1629.997786
KWD 0.356542
KYD 0.9613
KZT 537.975699
LAK 26026.292929
LBP 103298.655603
LKR 385.739878
LRD 208.208344
LSL 18.719353
LTL 3.407152
LVL 0.69798
LYD 7.356235
MAD 10.687188
MDL 20.036916
MGA 4963.483733
MKD 61.513602
MMK 2422.530647
MNT 4148.022534
MOP 9.32273
MRU 46.106204
MUR 54.27904
MVR 17.827624
MWK 2000.191954
MXN 19.759816
MYR 4.72185
MZN 73.739592
NAD 18.719353
NGN 1572.262254
NIO 42.445585
NOK 10.968631
NPR 176.051688
NZD 1.963162
OMR 0.443666
PAB 1.15348
PEN 3.899694
PGK 5.176462
PHP 70.583912
PKR 320.191096
PLN 4.297007
PYG 6868.285609
QAR 4.205063
RON 5.240181
RSD 117.359248
RUB 95.137449
RWF 1699.123269
SAR 4.322325
SBD 9.306967
SCR 15.797863
SDG 692.91888
SEK 10.965822
SGD 1.477245
SLE 28.388939
SOS 659.231431
SRD 43.560114
STD 23883.296381
STN 24.497452
SVC 10.09295
SZL 18.708459
THB 38.202042
TJS 10.629794
TMT 4.050171
TND 3.386948
TRY 55.08686
TTD 7.812357
TWD 37.209663
TZS 3052.632612
UAH 51.756417
UGX 4291.553623
USD 1.153895
UYU 46.445169
UZS 13715.573403
VES 872.07044
VND 30158.776144
VUV 137.137857
WST 3.15444
XAF 655.888779
XAG 0.017687
XAU 0.000263
XCD 3.118459
XCG 2.079029
XDR 0.815327
XOF 655.888779
XPF 119.331742
YER 275.086221
ZAR 18.677174
ZMK 10386.440091
ZMW 21.62875
ZWL 371.553713
  • BCC

    0.3400

    85.09

    +0.4%

  • NGG

    0.7900

    80.27

    +0.98%

  • CMSC

    -0.0400

    21.53

    -0.19%

  • CMSD

    0.0200

    21.71

    +0.09%

  • RIO

    -0.6800

    101.23

    -0.67%

  • BCE

    0.7450

    23.285

    +3.2%

  • GSK

    -0.8950

    51.265

    -1.75%

  • RBGPF

    -0.6200

    69.88

    -0.89%

  • AZN

    -1.7200

    160.19

    -1.07%

  • RYCEF

    -0.2800

    20.57

    -1.36%

  • VOD

    0.1750

    15.925

    +1.1%

  • JRI

    0.0180

    12.748

    +0.14%

  • RELX

    -0.2150

    35.405

    -0.61%

  • BP

    0.4950

    43.375

    +1.14%

  • BTI

    -0.2800

    56.77

    -0.49%

It's raining diamonds across the universe, research suggests
It's raining diamonds across the universe, research suggests / Photo: B. Jonsson - NSF's NOIRLab/AFP/File

It's raining diamonds across the universe, research suggests

It could be raining diamonds on planets throughout the universe, scientists suggested Friday, after using common plastic to recreate the strange precipitation believed to form deep inside Uranus and Neptune.

Text size:

Scientists had previously theorised that extremely high pressure and temperatures turn hydrogen and carbon into solid diamonds thousands of kilometres below the surface of the ice giants.

Now new research, published in Science Advances, inserted oxygen into the mix, finding that "diamond rain" could be more common than thought.

Ice giants like Neptune and Uranus are thought to be the most common form of planet outside our Solar System, which means diamond rain could be occurring across the universe.

Dominik Kraus, a physicist at Germany's HZDR research lab and one of the study's authors, said that diamond precipitation was quite different to rain on Earth.

Under the surface of the planets is believed to be a "hot, dense liquid", where the diamonds form and slowly sink down to the rocky, potentially Earth-size cores more than 10,000 kilometres (6,200 miles) below, he said.

There fallen diamonds could form vast layers that span "hundreds of kilometres or even more", Kraus told AFP.

While these diamonds might not be shiny and cut like a "a nice gem on a ring", he said they were formed via similar forces as on Earth.

Aiming to replicate the process, the research team found the necessary mix of carbon, hydrogen and oxygen in a readily available source -- PET plastic, which is used for everyday food packaging and bottles.

Kraus said that while the researchers used very clean PET plastic, "in principle the experiment should work with Coca-Cola bottles".

The team then turned a high-powered optical laser on the plastic at the SLAC National Accelerator Laboratory in California.

"Very, very short X-ray flashes of incredible brightness" allowed them to watch the process of nanodiamonds -- tiny diamonds too small to see with the naked eye -- as they formed, Kraus said.

"The oxygen that is present in large amounts on those planets really helps suck away the hydrogen atoms from the carbon, so it's actually easier for those diamonds to form," he added.

- New way to make nanodiamonds? -

The experiment could point towards a new way to produce nanodiamonds, which have a wide and increasing range of applications including drug delivery, medical censors, non-invasive surgery and quantum electronics.

"The way nanodiamonds are currently made is by taking a bunch of carbon or diamond and blowing it up with explosives," said SLAC scientist and study co-author Benjamin Ofori-Okai.

"Laser production could offer a cleaner and more easily controlled method to produce nanodiamonds," he added.

The diamond rain research remains hypothetical because little is known about Uranus and Neptune, the most distant planets in our Solar System.

Only one spacecraft -- NASA's Voyager 2 in the 1980s -- has flown past the two ice giants, and the data it sent back is still being used in research.

But a NASA group has outlined a potential new mission to the planets, possibly launching next decade.

"That would be fantastic," Kraus said.

He said he is greatly looking forward to more data -- even if it takes a decade or two.

P.Gashi--NZN