Zürcher Nachrichten - Webb spots giant star clusters shaping galaxy in early universe

EUR -
AED 4.248105
AFN 75.770596
ALL 92.830359
AMD 423.156353
ANG 2.0703
AOA 1061.880869
ARS 1706.354669
AUD 1.634265
AWG 2.083564
AZN 1.971037
BAM 1.956743
BBD 2.328663
BDT 141.919628
BGN 1.962242
BHD 0.436037
BIF 3456.475084
BMD 1.156733
BND 1.478902
BOB 13.474494
BRL 6.040925
BSD 1.156227
BTN 110.266145
BWP 15.57645
BYN 3.516708
BYR 22671.957183
BZD 2.325221
CAD 1.60514
CDF 2629.253412
CHF 0.941015
CLF 0.026895
CLP 1058.51481
CNY 7.800083
CNH 7.801606
COP 3644.771598
CRC 520.182191
CUC 1.156733
CUP 30.653411
CVE 110.322941
CZK 24.210763
DJF 205.574957
DKK 7.473191
DOP 67.676714
DZD 152.325697
EGP 57.668157
ERN 17.350988
ETB 187.022939
FJD 2.56037
FKP 0.857112
GBP 0.855002
GEL 3.019524
GGP 0.857112
GHS 12.660102
GIP 0.857112
GMD 85.024294
GNF 10156.334049
GTQ 8.821328
GYD 241.836558
HKD 9.077054
HNL 30.994814
HRK 7.534035
HTG 151.232041
HUF 363.017812
IDR 20622.34285
ILS 3.418265
IMP 0.857112
INR 110.600806
IQD 1514.621659
IRR 1590030.052589
ISK 142.166837
JEP 0.857112
JMD 183.099329
JOD 0.820169
JPY 184.272161
KES 149.519689
KGS 101.156702
KHR 4678.254774
KMF 493.925187
KPW 1041.059598
KRW 1638.477341
KWD 0.357061
KYD 0.963523
KZT 536.501043
LAK 26093.576298
LBP 103531.599032
LKR 384.738715
LRD 209.853842
LSL 18.703876
LTL 3.415531
LVL 0.699696
LYD 7.36193
MAD 10.723725
MDL 20.048876
MGA 4977.398953
MKD 61.563397
MMK 2428.460304
MNT 4161.151475
MOP 9.344704
MRU 46.43078
MUR 54.486429
MVR 17.871955
MWK 2004.766235
MXN 19.69164
MYR 4.726298
MZN 73.927211
NAD 18.703715
NGN 1572.659254
NIO 42.552716
NOK 10.922567
NPR 176.436714
NZD 1.963226
OMR 0.441083
PAB 1.156157
PEN 3.899682
PGK 5.193773
PHP 71.098608
PKR 321.135211
PLN 4.306226
PYG 6939.34455
QAR 4.21485
RON 5.236186
RSD 117.376006
RUB 97.377191
RWF 1700.222344
SAR 4.346103
SBD 9.310058
SCR 15.912008
SDG 694.622124
SEK 11.020235
SGD 1.479697
SHP 0.856984
SLE 28.344188
SLL 24256.10146
SOS 660.758451
SRD 43.926343
STD 23942.02751
STN 24.513298
SVC 10.116313
SYP 15039.835978
SZL 18.702146
THB 38.337629
TJS 10.676846
TMT 4.060131
TND 3.389734
TOP 2.785134
TRY 55.381697
TTD 7.833249
TWD 37.04043
TZS 3065.33888
UAH 51.722311
UGX 4295.33015
USD 1.156733
UYU 46.32453
UZS 13763.752692
VES 890.810236
VND 30246.82002
VUV 137.202351
WST 3.162108
XAF 656.273303
XAG 0.017873
XAU 0.000264
XCD 3.126128
XCG 2.08373
XDR 0.81787
XOF 656.307363
XPF 119.331742
YER 274.381102
ZAR 18.703491
ZMK 10411.984809
ZMW 21.850531
ZWL 372.467396
  • CMSC

    -0.0250

    21.45

    -0.12%

  • NGG

    -0.1500

    81.05

    -0.19%

  • BCE

    0.1500

    23.47

    +0.64%

  • CMSD

    -0.0100

    21.58

    -0.05%

  • RYCEF

    0.1300

    20.84

    +0.62%

  • RBGPF

    0.0000

    71.34

    0%

  • GSK

    -0.4785

    49.52

    -0.97%

  • BCC

    -0.8900

    83.24

    -1.07%

  • RIO

    -0.4100

    95.68

    -0.43%

  • BTI

    -0.2900

    57.06

    -0.51%

  • JRI

    0.0635

    12.61

    +0.5%

  • RELX

    -0.2400

    34.43

    -0.7%

  • VOD

    0.2000

    16.42

    +1.22%

  • BP

    0.2196

    42.53

    +0.52%

  • AZN

    -0.7900

    156.45

    -0.5%

Webb spots giant star clusters shaping galaxy in early universe
Webb spots giant star clusters shaping galaxy in early universe / Photo: - - ESA/HUBBLE/AFP/File

Webb spots giant star clusters shaping galaxy in early universe

The James Webb space telescope has discovered massive clusters of stars in the early universe so huge and densely packed that they influenced how their galaxy formed, astronomers said on Monday.

Text size:

The five clumps of stars, known as globular proto-clusters, are the earliest ever observed, dating back to 460 million years after the Big Bang when the universe was three percent its current age.

They were spotted in the Cosmic Gems Arc, an infant galaxy discovered by the Hubble telescope in 2018.

Looking into space means looking back in time, and the galaxy exists in what is called the epoch of reionisation, when the first stars and galaxies emerged and lit up the universe.

It is difficult to see that far back, but the Webb telescope's ability to detect infrared wavelengths has allowed it peer farther back into this cosmic dawn than ever before.

The discovery of the five globular proto-clusters marks "the first time we have been able to observe this type of object at this distance," said Adelaide Claeyssens, a co-author of the new study in the journal Nature.

It should help scientists better understand the "formation of star clusters that we can see in the nearby universe -- which are now very old -- and their influence on the formation of galaxies," the Stockholm University astronomer told AFP.

- Black hole seeds? -

There is nothing like these clusters in the universe we see around us, said lead study author Angela Adamo, also from Stockholm University.

Our home galaxy, the Milky Way, is now home to around 170 globular clusters.

But there were once thousands of them, before they were broken up and scattered when the galaxy expanded, Adamo told AFP.

Those that did survive are relative lightweights, making up an "insignificant" mass compared to all the other stars in the galaxy.

However the five clusters in the Cosmic Gems Arc are true heavyweights, representing nearly a third of their galaxy's total mass.

The young stars are also packed closely together.

Imagine there were a million stars jammed into the four light years of space that separate the Sun and its nearest star Proxima Centauri, Adamo said.

A separate study recently suggested that stars near the heart of globular proto-clusters are up to 10,000 more massive than the Sun.

Adamo said that such huge stars produce immense amounts of radiation, which means they "shape how galaxies form stars" and how gas is distributed around the galaxies.

And at the end of their short and violent lives, some of these behemoth stars likely create black holes, she added.

Some could even become the seeds that grow into the supermassive black holes squatting at the centre of galaxies, Adamo speculated.

To find out more, the researchers want to study more globular proto-clusters near the cosmic dawn. The James Webb Space telescope will help in this hunt, Adamo said.

But it will be the European Southern Observatory's Extremely Large Telescope, expected to start scanning the skies in 2028, that will help scientists "understand the physical processes within this galaxy," Adamo said.

So we have to wait a few more years to find out more about what happened over 13.2 billion years ago.

W.Vogt--NZN