Zürcher Nachrichten - Unfinished deepsea observatory spots highest-energy neutrino ever

EUR -
AED 4.35335
AFN 77.050797
ALL 96.66512
AMD 452.977132
ANG 2.121943
AOA 1087.00321
ARS 1715.259993
AUD 1.706088
AWG 2.136666
AZN 2.019869
BAM 1.955701
BBD 2.406579
BDT 146.012629
BGN 1.990709
BHD 0.449077
BIF 3539.921292
BMD 1.18539
BND 1.513224
BOB 8.256583
BRL 6.231008
BSD 1.19484
BTN 109.724461
BWP 15.634211
BYN 3.403228
BYR 23233.647084
BZD 2.403079
CAD 1.614917
CDF 2684.909135
CHF 0.911322
CLF 0.026011
CLP 1027.058063
CNY 8.240537
CNH 8.248946
COP 4350.080393
CRC 591.67013
CUC 1.18539
CUP 31.412839
CVE 110.259434
CZK 24.334287
DJF 212.769259
DKK 7.470097
DOP 75.226202
DZD 154.463202
EGP 55.903178
ERN 17.780852
ETB 185.61503
FJD 2.613371
FKP 0.865849
GBP 0.861444
GEL 3.194674
GGP 0.865849
GHS 13.089339
GIP 0.865849
GMD 86.533903
GNF 10484.470707
GTQ 9.164537
GYD 249.97738
HKD 9.259024
HNL 31.537408
HRK 7.536597
HTG 156.372106
HUF 381.328619
IDR 19883.141804
ILS 3.663335
IMP 0.865849
INR 108.693763
IQD 1565.320977
IRR 49934.560565
ISK 144.985527
JEP 0.865849
JMD 187.240547
JOD 0.840489
JPY 183.456955
KES 154.262212
KGS 103.662825
KHR 4804.757439
KMF 491.93733
KPW 1066.851144
KRW 1719.768532
KWD 0.36382
KYD 0.99575
KZT 600.939662
LAK 25713.701882
LBP 106998.998316
LKR 369.511346
LRD 215.369127
LSL 18.971842
LTL 3.500149
LVL 0.717031
LYD 7.497621
MAD 10.838453
MDL 20.096985
MGA 5339.730432
MKD 61.636888
MMK 2489.708718
MNT 4227.553379
MOP 9.608515
MRU 47.674593
MUR 53.852723
MVR 18.32658
MWK 2071.895403
MXN 20.70407
MYR 4.672854
MZN 75.580924
NAD 18.971842
NGN 1643.520192
NIO 43.96778
NOK 11.437875
NPR 175.559137
NZD 1.964681
OMR 0.458017
PAB 1.19484
PEN 3.994898
PGK 5.114742
PHP 69.837307
PKR 334.289724
PLN 4.215189
PYG 8003.59595
QAR 4.35638
RON 5.097064
RSD 117.394074
RUB 90.535429
RWF 1743.311992
SAR 4.447217
SBD 9.544303
SCR 17.203132
SDG 713.016537
SEK 10.580086
SGD 1.506161
SHP 0.88935
SLE 28.834661
SLL 24857.038036
SOS 682.865527
SRD 45.104693
STD 24535.182964
STN 24.498763
SVC 10.454472
SYP 13109.911225
SZL 18.966043
THB 37.225573
TJS 11.153937
TMT 4.148866
TND 3.433027
TOP 2.854135
TRY 51.401485
TTD 8.11259
TWD 37.456003
TZS 3076.744675
UAH 51.211415
UGX 4271.784345
USD 1.18539
UYU 46.367659
UZS 14607.262574
VES 410.075543
VND 30749.020682
VUV 140.814221
WST 3.213333
XAF 655.923887
XAG 0.014004
XAU 0.000244
XCD 3.203577
XCG 2.153391
XDR 0.815759
XOF 655.923887
XPF 119.331742
YER 282.508153
ZAR 19.134414
ZMK 10669.938133
ZMW 23.448816
ZWL 381.695147
  • SCS

    0.0200

    16.14

    +0.12%

  • RIO

    -4.1000

    91.03

    -4.5%

  • CMSC

    0.0500

    23.76

    +0.21%

  • BCE

    0.3700

    25.86

    +1.43%

  • RBGPF

    1.3800

    83.78

    +1.65%

  • BTI

    0.4600

    60.68

    +0.76%

  • BCC

    0.5100

    80.81

    +0.63%

  • CMSD

    -0.0400

    24.05

    -0.17%

  • NGG

    0.2000

    85.27

    +0.23%

  • GSK

    0.9400

    51.6

    +1.82%

  • JRI

    0.1400

    13.08

    +1.07%

  • AZN

    0.1800

    92.77

    +0.19%

  • RELX

    -0.3700

    35.8

    -1.03%

  • BP

    -0.1600

    37.88

    -0.42%

  • RYCEF

    -0.4300

    16

    -2.69%

  • VOD

    -0.0600

    14.65

    -0.41%

Unfinished deepsea observatory spots highest-energy neutrino ever
Unfinished deepsea observatory spots highest-energy neutrino ever / Photo: ANNE-CHRISTINE POUJOULAT - AFP/File

Unfinished deepsea observatory spots highest-energy neutrino ever

A neutrino with 30 times more energy than any previously seen on Earth was detected by an unfinished observatory at the bottom of the Mediterranean Sea after travelling from beyond this galaxy, scientists said Wednesday.

Text size:

Neutrinos are the second most abundant particle in the universe. Known as ghost particles, they have no electric charge, almost no mass and effortlessly pass through most matter -- such as our world or bodies -- without anyone noticing.

The most violently explosive events in the universe -- such as a star going supernova, two neutron stars smashing into each other or the almighty suck of supermassive black holes -- create what is called ultra-high-energy neutrinos.

Because these particles interact so little with matter, they glide easily away from the violence that created them, travelling in a straight line across the universe.

When they finally arrive at Earth, neutrinos serve as "special cosmic messengers" offering a glimpse into the far reaches of the cosmos that is otherwise hidden from our view, Italian researcher Rosa Coniglione said in a statement.

However, these ghost particles are extremely difficult to detect. One way is by using water.

When light passes through water, it slows down. This sometimes allows quick-moving particles to overtake light -- while still not going faster than the speed of light.

When this happens, it creates a bluish glow called "Cherenkov light" that can be detected by extraordinarily sensitive sensors.

But to observe this light requires a huge amount of water -- at least one cubic kilometre, the equivalent of 400,000 Olympic swimming pools.

That is why the Cubic Kilometre Neutrino Telescope, or KM3NeT, lies at the bottom of the Mediterranean.

- Think of a ping pong ball -

The European-led facility is still under construction, and spread over two sites. Its ARCA detector, which is interested in astronomy, is nearly 3,500 metres (2.2 miles) underwater off the coast of Sicily.

The neutrino-hunting ORCA detector is in the depths near the French city of Toulon.

Cables hundreds of metres long equipped with photomultipliers -- which amplify miniscule amounts of light -- have been anchored to the seabed nearby. Eventually 200,000 photomultipliers will be arrayed in the abyss.

But the ARCA detector was operating at just a tenth of what will be its eventual power when it spotted something strange on February 13, 2023, according to new research published in the journal Nature.

A muon, which is a heavy electron produced by a neutrino, "crossed the entire detector, inducing signals in more than one-third of the active sensors," according to a statement from KM3NeT, which brings together 350 scientists from institutions in 21 countries.

The neutrino had an estimated energy of 220 petaelectronvolts -- or 220 million billion electron volts.

A neutrino with such a massive amount of energy had never before been observed on Earth.

"It is roughly the energy of a ping pong ball falling from one metre height," Dutch physicist and KM3NeT researcher Aart Heijboer told a press conference.

"But the amazing thing is that all this energy is contained in one single elementary" particle, he added.

For humans to create such a particle would require building the equivalent of a Large Hadron Collider "all around the Earth at the distance of the geostationary satellites", said French physicist Paschal Coyle.

- Blazars as source? -

With this kind of energy, the event that created this neutrino must have been beyond Milky Way.

The exact distance remains unknown, "but what we are quite sure is that it's not coming from our galaxy", said French physicist Damien Dornic.

The astrophysicists have some theories about what could have caused such a neutrino. Among the suspects are 12 blazars -- the incredibly bright cores of galaxies with supermassive black holes.

But more research is needed.

"At the time this event happened, our neutrino alert system was still in development," Heijboer emphasised.

If another neutrino is detected near the end of this year, an alert will be sent in seconds to "all the telescopes around the world so that they can point in that direction" to try to spot the source, he said.

R.Bernasconi--NZN