The Fort Worth Press - It's raining diamonds across the universe, research suggests

USD -
AED 3.672962
AFN 65.000396
ALL 79.569641
AMD 363.410009
ANG 1.790365
AOA 918.000118
ARS 1512.732505
AUD 1.403509
AWG 1.8
AZN 1.684438
BAM 1.695609
BBD 2.01466
BDT 123.160418
BGN 1.683441
BHD 0.377012
BIF 2995
BMD 1
BND 1.273738
BOB 10.998357
BRL 5.144046
BSD 1.000308
BTN 95.98391
BWP 13.567066
BYN 3.037656
BYR 19600
BZD 2.011747
CAD 1.39515
CDF 2309.999597
CHF 0.819885
CLF 0.024143
CLP 953.330119
CNY 6.706399
CNH 6.706796
COP 3133.79
CRC 447.438348
CUC 1
CUP 26.5
CVE 95.999895
CZK 21.106303
DJF 177.71991
DKK 6.489345
DOP 58.850154
DZD 133.63037
EGP 52.199498
ERN 15
ETB 160.949926
EUR 0.86806
FJD 2.21295
FKP 0.741937
GBP 0.744595
GEL 2.603264
GGP 0.741937
GHS 11.505024
GIP 0.741937
GMD 73.99969
GNF 8795.314945
GTQ 7.636255
GYD 209.277425
HKD 7.844805
HNL 26.847168
HRK 6.531703
HTG 130.738787
HUF 316.004029
IDR 17690
ILS 3.027501
IMP 0.741937
INR 95.90965
IQD 1310.5
IRR 1374600.000237
ISK 121.320336
JEP 0.741937
JMD 157.856864
JOD 0.708988
JPY 155.228505
KES 129.498728
KGS 87.449898
KHR 4050.422208
KMF 427.000462
KPW 900.000318
KRW 1367.705023
KWD 0.30856
KYD 0.833583
KZT 444.773881
LAK 22392.336201
LBP 89575.662472
LKR 331.544497
LRD 173.548166
LSL 16.285389
LTL 2.95274
LVL 0.60489
LYD 6.345021
MAD 9.466964
MDL 17.439779
MGA 4325.19127
MKD 53.344315
MMK 2099.62457
MNT 3595.075141
MOP 8.082447
MRU 40.060447
MUR 47.290412
MVR 15.410502
MWK 1736.502094
MXN 17.15007
MYR 4.068397
MZN 63.892219
NAD 16.285247
NGN 1326.720329
NIO 36.811146
NOK 9.361295
NPR 153.579928
NZD 1.739085
OMR 0.384497
PAB 1.000282
PEN 3.355918
PGK 4.522953
PHP 62.724028
PKR 277.25311
PLN 3.781535
PYG 5918.765443
QAR 3.636395
RON 4.568901
RSD 101.865037
RUB 84.244494
RWF 1475.913668
SAR 3.753075
SBD 8.03625
SCR 14.650196
SDG 601.50092
SEK 9.78923
SGD 1.274225
SHP 0.742225
SLE 24.640299
SLL 20969.491881
SOS 571.673797
SRD 37.752497
STD 20697.981008
STN 21.240534
SVC 8.752834
SYP 13002.000254
SZL 16.283395
THB 33.282013
TJS 9.226022
TMT 3.5
TND 2.928519
TOP 2.40776
TRY 48.657898
TTD 6.782056
TWD 31.792499
TZS 2645.002985
UAH 44.609389
UGX 3916.077853
UYU 40.244484
UZS 11793.315705
VES 841.183975
VND 25998.5
VUV 118.157011
WST 2.736734
XAF 569.409897
XAG 0.01559
XAU 0.000231
XCD 2.70255
XCG 1.802758
XDR 0.707052
XOF 569.409897
XPF 103.393717
YER 236.499459
ZAR 16.289965
ZMK 9001.251421
ZMW 19.630588
ZWL 321.999592
SSP 5655.283496
MXV 1.944584
  • VOD

    -0.2200

    17.46

    -1.26%

  • CMSC

    0.1400

    20.46

    +0.68%

  • GSK

    0.3000

    50.31

    +0.6%

  • NGG

    1.0700

    76

    +1.41%

  • RIO

    -1.4400

    95.82

    -1.5%

  • RYCEF

    0.2600

    19.3

    +1.35%

  • BTI

    -0.4250

    56.095

    -0.76%

  • BCE

    -0.3900

    22.51

    -1.73%

  • BP

    -1.5750

    45.385

    -3.47%

  • CMSD

    0.1900

    20.26

    +0.94%

  • BCC

    -0.6100

    75.32

    -0.81%

  • AZN

    0.8600

    162.71

    +0.53%

  • JRI

    -0.0700

    11.55

    -0.61%

  • RELX

    0.0550

    34.275

    +0.16%

  • RBGPF

    0.0000

    69.99

    0%

It's raining diamonds across the universe, research suggests
It's raining diamonds across the universe, research suggests / Photo: © 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.

T.Mason--TFWP