The Fort Worth Press - First image of black hole at Milky Way's centre revealed

USD -
AED 3.672501
AFN 65.000436
ALL 79.425019
AMD 363.486628
ANG 1.790365
AOA 918.000178
ARS 1506.980796
AUD 1.402623
AWG 1.80125
AZN 1.698529
BAM 1.695484
BBD 2.014052
BDT 123.117201
BGN 1.683441
BHD 0.376925
BIF 2989.913701
BMD 1
BND 1.272512
BOB 11.549614
BRL 5.145102
BSD 0.999961
BTN 95.956378
BWP 13.533932
BYN 3.036379
BYR 19600
BZD 2.011105
CAD 1.392925
CDF 2312.507292
CHF 0.81895
CLF 0.024163
CLP 954.080356
CNY 6.71145
CNH 6.70763
COP 3124.43
CRC 447.490128
CUC 1
CUP 26.5
CVE 95.587534
CZK 21.061197
DJF 178.068476
DKK 6.47779
DOP 58.801347
DZD 133.543903
EGP 52.037401
ERN 15
ETB 161.000493
EUR 0.86653
FJD 2.21295
FKP 0.741937
GBP 0.742437
GEL 2.579026
GGP 0.741937
GHS 11.484548
GIP 0.741937
GMD 73.496371
GNF 8792.894946
GTQ 7.633859
GYD 209.20727
HKD 7.84445
HNL 26.92035
HRK 6.529016
HTG 130.692777
HUF 316.127499
IDR 17673
ILS 3.02755
IMP 0.741937
INR 95.980502
IQD 1310.5
IRR 1374600.000042
ISK 121.170042
JEP 0.741937
JMD 157.495741
JOD 0.70902
JPY 155.096019
KES 129.559582
KGS 87.449797
KHR 4050.990642
KMF 427.00005
KPW 900.000318
KRW 1369.21501
KWD 0.30854
KYD 0.833344
KZT 447.238729
LAK 22378.840877
LBP 89546.484966
LKR 329.887434
LRD 174.592235
LSL 16.269825
LTL 2.95274
LVL 0.60489
LYD 6.340349
MAD 9.454421
MDL 17.384671
MGA 4374.999967
MKD 53.336974
MMK 2099.62457
MNT 3595.075141
MOP 8.079529
MRU 40.049568
MUR 47.229927
MVR 15.398187
MWK 1736.500846
MXN 17.142795
MYR 4.0448
MZN 63.91036
NAD 16.261524
NGN 1325.959639
NIO 36.610027
NOK 9.34776
NPR 153.530205
NZD 1.738224
OMR 0.384506
PAB 0.999961
PEN 3.354994
PGK 4.442497
PHP 62.720145
PKR 277.214153
PLN 3.76579
PYG 5952.086828
QAR 3.64195
RON 4.557799
RSD 101.707986
RUB 84.043409
RWF 1468.937329
SAR 3.753075
SBD 8.03625
SCR 13.660883
SDG 601.500129
SEK 9.786101
SGD 1.27331
SHP 0.742225
SLE 24.63988
SLL 20969.491881
SOS 571.450863
SRD 37.749564
STD 20697.981008
STN 21.55
SVC 8.74955
SYP 13002.000254
SZL 16.240432
THB 33.286008
TJS 9.224608
TMT 3.51
TND 2.91375
TOP 2.40776
TRY 48.647197
TTD 6.786038
TWD 31.826025
TZS 2646.284979
UAH 44.640738
UGX 3929.6086
UYU 40.215163
UZS 11764.705882
VES 841.184009
VND 25997.5
VUV 118.157011
WST 2.736734
XAF 568.406287
XAG 0.015499
XAU 0.000231
XCD 2.70255
XCG 1.802215
XDR 0.707052
XOF 568.406287
XPF 103.386547
YER 236.553451
ZAR 16.282915
ZMK 9001.200054
ZMW 19.524162
ZWL 321.999592
SSP 5655.283496
MXV 1.94376
  • CMSD

    -0.1700

    20.07

    -0.85%

  • JRI

    -0.2065

    11.62

    -1.78%

  • CMSC

    -0.1000

    20.32

    -0.49%

  • GSK

    -0.0400

    50.01

    -0.08%

  • RBGPF

    0.0000

    69.99

    0%

  • BCC

    0.6800

    75.93

    +0.9%

  • RIO

    -0.3800

    97.26

    -0.39%

  • BCE

    -0.2534

    22.9

    -1.11%

  • AZN

    -1.9300

    161.85

    -1.19%

  • RYCEF

    0.2600

    19.3

    +1.35%

  • RELX

    -1.5000

    34.22

    -4.38%

  • VOD

    0.1500

    17.68

    +0.85%

  • NGG

    -0.0300

    74.93

    -0.04%

  • BTI

    -0.7700

    56.52

    -1.36%

  • BP

    1.0300

    46.96

    +2.19%

First image of black hole at Milky Way's centre revealed

First image of black hole at Milky Way's centre revealed

An international team of astronomers on Thursday unveiled the first image of a supermassive black hole at the centre of our own Milky Way galaxy -- a cosmic body known as Sagittarius A*.

Text size:

The image -- produced by a global team of scientists known as the Event Horizon Telescope (EHT) Collaboration -- is the first, direct visual confirmation of the presence of this invisible object, and comes three years after the very first image of a black hole from a distant galaxy.

"For decades, we have known about a compact object that is at the heart of our galaxy that is four million times more massive than our Sun," Harvard University astronomer Sara Issaoun told a press conference in Garching, Germany, held simultaneously with other media events around the world.

"Today, right this moment, we have direct evidence that this object is a black hole."

Black holes are regions of space where the pull of gravity is so intense that nothing can escape, including light.

The image thus depicts not the black hole itself, because it is completely dark, but the glowing gas that encircles the phenomenon in a bright ring of bending light.

As seen from Earth, it appears the same size as a donut on the surface of the Moon, Issaoun explained.

"These unprecedented observations have greatly improved our understanding of what happens at the very centre of our galaxy," EHT project scientist Geoffrey Bower, of Taiwan's Academia Sinica, said in a statement.

The research results are published in The Astrophysical Journal Letters.

- Virtual telescope -

Sagittarius A* -- abbreviated to Sgr A*, and pronounced "sadge-ay-star" -- owes its name to its detection in the direction of the constellation Sagittarius.

Located 27,000 light years from Earth, its existence has been assumed since 1974, with the detection of an unusual radio source at the centre of the galaxy.

In the 1990s, astronomers mapped the orbits of the brightest stars near the centre of the Milky Way, confirming the presence of a supermassive compact object there -- work that led to the 2020 Nobel Prize in Physics.

Though the presence of a black hole was thought to be the only plausible explanation, the new image provides the first direct visual proof.

Capturing images of such a faraway object required linking eight giant radio observatories across the planet to form a single "Earth-sized" virtual telescope called the EHT.

"The EHT can see three million times sharper than the human eye," German scientist Thomas Krichbaum of the Max Planck Institute for Radio Astronomy told reporters.

"So, when you are sitting in a Munich beer garden, for example, one could see the bubbles in a glass of beer in New York."

The EHT gazed at Sgr A* across multiple nights for many hours in a row -- a similar idea to long-exposure photography and the same process used to produce the first image of a black hole, released in 2019.

That black hole is called M87* because it is in the Messier 87 galaxy.

- Einstein would be 'ecstatic' -

The two black holes bear striking similarities, despite the fact that Sgr A* is 2,000 times smaller than M87*.

"Close to the edge of these black holes, they look amazingly similar," said Sera Markoff, co-chair of the EHT Science Council, and a professor at the University of Amsterdam.

Both behaved as predicted by Einstein's 1915 theory of General Relativity, which holds that the force of gravity results from the curvature of space and time, and cosmic objects change this geometry.

Despite the fact Sgr A* is much closer to us, imaging it presented unique challenges.

Gas in the vicinity of both black holes moves at the same speed, close to the speed of light. But while it took days and weeks to orbit the larger M87*, it completed rounds of Sgr A* in just minutes.

The brightness and pattern of the gas around Sgr A* changed rapidly as the team observed it, "a bit like trying to take a clear picture of a puppy quickly chasing its tail," said EHT scientist Chi-kwan Chan of the University of Arizona.

The researchers had to develop complex new tools to account for the moving targets.

The resulting image -- the work of more than 300 researchers across 80 countries over a period of five years -- is an average of multiple images that revealed the invisible monster lurking at the centre of the galaxy.

"The fact that we're able to make an image of one, something that should be unseeable... I think that that's just really exciting," Katie Bouman, a Caltech professor who played a key role in creating the image, told AFP.

Scientists are now eager to compare the two black holes to test theories about how gasses behave around them -- a poorly understood phenomenon thought to play a role in the formation of new stars and galaxies.

Probing black holes -- in particular their infinitely small and dense centers known as singularities, where Einstein's equations break down -- could help physicists deepen their understanding of gravity and develop a more advanced theory.

"What about Einstein? Would he smile seeing all these hundreds of scientists still not having proven him wrong?" said Anton Zensus of the Max Planck Institute.

"I rather think that he would be ecstatic seeing all the experimental possibilities we have in this field today."

X.Silva--TFWP