The China Mail - 'Fingerprints' of black hole's event horizon detected for first time

USD -
AED 3.672504
AFN 65.000368
ALL 81.757752
AMD 361.930403
ANG 1.790365
AOA 918.000367
ARS 1517.834304
AUD 1.435544
AWG 1.8
AZN 1.70397
BAM 1.745081
BBD 2.014187
BDT 123.310283
BGN 1.683441
BHD 0.377783
BIF 2992.192728
BMD 1
BND 1.280571
BOB 11.844107
BRL 4.990804
BSD 1.000045
BTN 96.679902
BWP 13.757752
BYN 3.042248
BYR 19600
BZD 2.011332
CAD 1.426204
CDF 2310.000362
CHF 0.829664
CLF 0.024742
CLP 976.970396
CNY 6.69215
CNH 6.687704
COP 3195.29
CRC 456.301584
CUC 1
CUP 24.001785
CVE 98.750394
CZK 21.763304
DJF 178.086103
DKK 6.672604
DOP 60.611198
DZD 134.724069
EGP 52.403301
ERN 15
ETB 162.480749
EUR 0.892504
FJD 2.24725
FKP 0.757083
GBP 0.755201
GEL 2.590391
GGP 0.757083
GHS 11.77039
GIP 0.757083
GMD 73.503851
GNF 8797.680125
GTQ 7.644716
GYD 209.141639
HKD 7.848504
HNL 26.843631
HRK 6.725604
HTG 130.956948
HUF 325.760388
IDR 17891.4
ILS 3.06346
IMP 0.757083
INR 96.775504
IQD 1515.056882
IRR 1779470.000352
ISK 122.150386
JEP 0.757083
JMD 158.724069
JOD 0.70904
JPY 158.28504
KES 129.698862
KGS 87.450384
KHR 4060.673656
KMF 440.00035
KPW 900.000318
KRW 1340.880383
KWD 0.31096
KYD 0.833371
KZT 454.436761
LAK 22426.053982
LBP 89555.476244
LKR 330.885568
LRD 171.010484
LSL 16.545706
LTL 2.95274
LVL 0.60489
LYD 6.430515
MAD 9.833504
MDL 17.93085
MGA 4459.513718
MKD 54.940888
MMK 2099.693915
MNT 3600.849225
MOP 8.083426
MRU 39.963417
MUR 47.460378
MVR 15.450378
MWK 1734.106625
MXN 18.414104
MYR 4.085504
MZN 63.910377
NAD 16.545706
NGN 1329.000344
NIO 36.80571
NOK 9.561404
NPR 154.687486
NZD 1.783644
OMR 0.384742
PAB 1.000045
PEN 3.429668
PGK 4.534464
PHP 62.745038
PKR 276.931162
PLN 3.916904
PYG 5688.155253
QAR 3.640374
RON 4.766038
RSD 104.733437
RUB 85.159581
RWF 1474.102164
SAR 3.751874
SBD 8.078071
SCR 14.675038
SDG 601.503676
SEK 9.999204
SGD 1.279404
SHP 0.755572
SLE 24.670371
SLL 20969.491881
SOS 571.492304
SRD 37.692504
STD 20697.981008
STN 21.860361
SVC 8.75039
SYP 13002.000254
SZL 16.542494
THB 33.553038
TJS 9.200535
TMT 3.51
TND 3.009508
TOP 2.40776
TRY 49.221304
TTD 6.793665
TWD 31.961404
TZS 2640.285523
UAH 44.916529
UGX 4088.733456
UYU 40.164333
UZS 11900.959179
VES 875.701604
VND 25899.5
VUV 120.049533
WST 2.785534
XAF 585.444314
XAG 0.016442
XAU 0.000238418806
XCD 2.70255
XCG 1.802364
XDR 0.707052
XOF 585.444314
XPF 106.410886
YER 236.203589
ZAR 16.52005
ZMK 9001.203584
ZMW 19.875976
ZWL 321.999592
SSP 5753.260075
MXV 2.08033
  • RYCEF

    0.4000

    19.71

    +2.03%

  • CMSC

    0.0000

    20.4

    0%

  • BTI

    0.4200

    56.05

    +0.75%

  • BP

    0.2800

    44.43

    +0.63%

  • RBGPF

    1.6000

    67

    +2.39%

  • RIO

    -0.1500

    94.41

    -0.16%

  • AZN

    -0.4300

    166.15

    -0.26%

  • GSK

    0.4600

    49.7

    +0.93%

  • BCE

    -0.4100

    20.56

    -1.99%

  • NGG

    -0.2500

    75.24

    -0.33%

  • VOD

    -0.0400

    16.58

    -0.24%

  • RELX

    -0.4500

    33.07

    -1.36%

  • BCC

    -0.5500

    76.59

    -0.72%

  • CMSD

    -0.0300

    20.27

    -0.15%

  • JRI

    -0.2500

    10.77

    -2.32%

'Fingerprints' of black hole's event horizon detected for first time
'Fingerprints' of black hole's event horizon detected for first time / Photo: © European Southern Observatory/AFP/File

'Fingerprints' of black hole's event horizon detected for first time

Scientists have detected the "fingerprints" of a black hole's event horizon -- the boundary from which nothing can escape -- for the first time, according to research published on Wednesday.

Text size:

The discovery was made by studying ripples in space-time called gravitational waves that were created when two black holes violently smashed into each other.

A black hole's event horizon is known as the "point of no return" because not even light can avoid being swallowed into its darkness.

This has made them incredibly difficult to learn anything about.

However there is one event of such cataclysmic violence that it could offer a chance to glimpse this extreme phenomenon -- when two black holes merge into one.

When this cosmic death spiral occurs, it shoots gravitational waves across the universe which scientists have been detecting for the last decade.

For the new research published in Nature, an international team of researchers analysed data from the strongest gravitational wave ever recorded, known as GW250114, detected by the LIGO observatory in January 2025.

By isolating the last burst of waves -- known as "direct waves" -- from this black hole merger, the scientists said they were able to extract information from closer to an event horizon than ever before.

"This black hole horizon concept normally appears in science fiction," lead study author Sizheng Ma of the Perimeter Institute for Theoretical Physics in Canada told AFP.

"But now we are really able to touch the region around the horizon with gravitational data," he added.

"Sometimes I cannot believe this is really happening."

- Causing a stir -

The last stage of two black holes merging is like a spoon stirring a glass of water, Sizheng Ma explained.

The resulting swirl in space creates the ripple of gravitational waves that travel at the speed of light in all directions.

If the metaphorical spoon is stirring close enough to the black hole's event horizon, "this offers us a chance to decode the physics around that region", Sizheng Ma said.

By supporting the theory of general relativity, the results "proved that Einstein was correct again," he added.

The scientists emphasised that more research was needed to decipher what can be gleaned about event horizons using this method.

But they did detect information about how black holes twist space around themselves as they rotate -- a phenomenon known as "frame dragging".

"This is similar to pushing a glass into a table and twisting it, so that the tablecloth winds up around it," Maximiliano Isi, a gravitational wave astrophysicist at Columbia University, told AFP.

In the future, the team of scientists hope to find signs of tiny changes known as quantum fluctuation.

"In this way, we can really probe this near horizon region to look for a new physics," including searching for a deviation from general relativity, Sizheng Ma said.

- Reaction mixed -

Experts not involved in the study urged caution.

Francesco Sannino, an Italian theoretical physicist who studies black holes, told AFP it was "compelling analysis" but needed to be checked by other researchers.

Still, it was "striking" that the scientists were able to show that gravitational waves carried the event horizon's "fingerprints," he said.

The astrophysicist Isi described the work as "tantalising".

"More generally, understanding the physics of black holes and their mergers is important as it might shed light on how space and time are woven together at a more fundamental level," he told AFP.

Sean McWilliams, an astrophysicist at West Virginia University, was sceptical that the gravitational wave frequency analysed by the scientists was actually "dictated" by the event horizon.

For this reason, "the actual observed signal doesn't really tell us anything about the horizon or the other properties directly related to it", he told AFP.

Sizheng Ma said McWilliams's statement was "not correct," suggesting he had conflated two different aspects in the paper.

"There is often considerable resistance and criticism in the early stages of promoting a new concept," he said, adding he is working on another paper to "clarify these confusions and possible misinterpretations".

D.Pan--ThChM