The Fort Worth Press - Oldest quasars ever discovered add to 'perplexing' space mystery

USD -
AED 3.672497
AFN 65.000299
ALL 79.569641
AMD 363.409858
ANG 1.790365
AOA 918.000006
ARS 1507.786404
AUD 1.402003
AWG 1.80125
AZN 1.700088
BAM 1.695609
BBD 2.01466
BDT 123.160418
BGN 1.683441
BHD 0.377118
BIF 2991.820156
BMD 1
BND 1.273738
BOB 10.998357
BRL 5.144898
BSD 1.000308
BTN 95.98391
BWP 13.567066
BYN 3.037656
BYR 19600
BZD 2.011747
CAD 1.39366
CDF 2312.503214
CHF 0.818501
CLF 0.024154
CLP 953.749848
CNY 6.71145
CNH 6.70591
COP 3127.62
CRC 447.438348
CUC 1
CUP 26.5
CVE 95.595821
CZK 21.07295
DJF 178.127262
DKK 6.47764
DOP 59.048684
DZD 133.877982
EGP 52.198901
ERN 15
ETB 163.385076
EUR 0.86655
FJD 2.21295
FKP 0.741937
GBP 0.743145
GEL 2.597171
GGP 0.741937
GHS 11.488194
GIP 0.741937
GMD 73.503157
GNF 8795.314945
GTQ 7.636255
GYD 209.277425
HKD 7.844699
HNL 26.847168
HRK 6.5298
HTG 130.738787
HUF 315.586989
IDR 17687
ILS 3.027498
IMP 0.741937
INR 95.907349
IQD 1310.410896
IRR 1374599.999914
ISK 121.140073
JEP 0.741937
JMD 157.856864
JOD 0.709008
JPY 155.045019
KES 129.501832
KGS 87.449895
KHR 4050.422208
KMF 427.000011
KPW 900.000318
KRW 1367.304993
KWD 0.30854
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 6.353115
MAD 9.432659
MDL 17.439779
MGA 4325.19127
MKD 53.344315
MMK 2099.62457
MNT 3595.075141
MOP 8.082447
MRU 40.051151
MUR 47.290362
MVR 15.389513
MWK 1734.543043
MXN 17.13729
MYR 4.044802
MZN 63.909789
NAD 16.285247
NGN 1326.92021
NIO 36.811146
NOK 9.352695
NPR 153.579928
NZD 1.735345
OMR 0.384499
PAB 1.000282
PEN 3.355918
PGK 4.522953
PHP 62.718023
PKR 277.25311
PLN 3.775165
PYG 5918.765443
QAR 3.636395
RON 4.561303
RSD 101.694019
RUB 84.330137
RWF 1475.913668
SAR 3.753075
SBD 8.03625
SCR 13.676962
SDG 601.498266
SEK 9.76976
SGD 1.27315
SHP 0.742225
SLE 24.639846
SLL 20969.491881
SOS 571.673797
SRD 37.752501
STD 20697.981008
STN 21.240534
SVC 8.752834
SYP 13002.000254
SZL 16.283395
THB 33.229499
TJS 9.226022
TMT 3.51
TND 2.928519
TOP 2.40776
TRY 48.657935
TTD 6.782056
TWD 31.7655
TZS 2645.002972
UAH 44.609389
UGX 3916.077853
UYU 40.244484
UZS 11793.315705
VES 841.184029
VND 25998.5
VUV 118.157011
WST 2.736734
XAF 568.419469
XAG 0.01544
XAU 0.00023
XCD 2.70255
XCG 1.802758
XDR 0.707052
XOF 568.419469
XPF 103.393717
YER 236.497564
ZAR 16.25115
ZMK 9001.19823
ZMW 19.630588
ZWL 321.999592
SSP 5655.283496
MXV 1.943135
  • RYCEF

    0.2600

    19.3

    +1.35%

  • CMSC

    0.1500

    20.47

    +0.73%

  • BTI

    -0.1350

    56.385

    -0.24%

  • NGG

    1.5000

    76.43

    +1.96%

  • RBGPF

    0.0000

    69.99

    0%

  • GSK

    0.1950

    50.205

    +0.39%

  • VOD

    -0.1050

    17.575

    -0.6%

  • BP

    -1.1200

    45.84

    -2.44%

  • RIO

    -0.0950

    97.165

    -0.1%

  • BCE

    -0.2950

    22.605

    -1.31%

  • CMSD

    0.1800

    20.25

    +0.89%

  • RELX

    0.1750

    34.395

    +0.51%

  • JRI

    0.0300

    11.65

    +0.26%

  • BCC

    0.1950

    76.125

    +0.26%

  • AZN

    1.5500

    163.4

    +0.95%

Oldest quasars ever discovered add to 'perplexing' space mystery
Oldest quasars ever discovered add to 'perplexing' space mystery / Photo: © ESO/AFP/File

Oldest quasars ever discovered add to 'perplexing' space mystery

The Euclid space telescope has spotted the oldest quasars -- the brightest objects in the universe -- ever discovered, deepening a cosmic mystery that has been puzzling scientists.

Text size:

Quasars are powered by supermassive black holes at the heart of early galaxies gobbling up surrounding matter in a colossal feeding frenzy that can shine trillions of times brighter than the Sun.

Because they are so incredibly bright -- and looking deep into space also means looking back in time -- scientists have been hunting for ancient quasars to learn more about the little-understood infancy of the universe.

In a study published on Monday, an international team of astronomers announced they had discovered 31 quasars, including the two oldest observed yet, using the European Space Agency's Euclid telescope, which is at a stable hovering spot around 1.5 million kilometres from Earth.

The light from the oldest pair comes from when the universe was roughly 670 million years old, just five percent of its current age of 13.8 billion years.

This beats the team's previous record for oldest -- and therefore most distant -- quasar announced in 2021 by around 20 million years.

Previous quasar hunts were mostly carried out with ground-based telescopes, but the launch of Euclid in 2023 "has transformed this field," Daming Yang, the lead author of the study in Astronomy & Astrophysics, told AFP.

In just two years, Euclid has doubled the number of ancient quasars known to science, added Yang, a PhD student at Leiden University in the Netherlands.

- Cosmic quandary -

The newly discovered quasars date back to what is known as the epoch of reionisation. This when the first stars and galaxies began to form, bringing an end to the cosmic dark ages.

"We can use quasars as a lighthouse to study the gas between us and them, so that we can trace how the universe was reionised through this cosmic history," Daming Yang said.

The quasars are also the latest example of a problem that has been increasingly baffling scientists.

As more powerful telescopes allow us to see further back in time, galaxies and other cosmic objects have turned out to be far bigger than had been thought possible at such an early age.

"Every step further back in time makes the puzzle more perplexing," study co-author Joseph Hennawi said in a statement about the newly discovered quasars.

"These monsters -- weighing billions of times the mass of our Sun -- somehow already existed when the universe was in its infancy," he said.

"We don't yet have a good understanding of how they grew so massive, so fast."

Hoping to find an answer, the scientists are searching for even older quasars.

The far-seeing James Webb space telescope also recently observed the newly announced quasars, Daming said, and the team will soon begin sifting through the data it collected.

The team eventually hope to stitch together "a quasar chronicle of the first billion years," Hennawi said.

L.Holland--TFWP