The Fort Worth Press - Webb telescope spots its first star -- and takes a selfie

USD -
AED 3.672499
AFN 65.000102
ALL 80.716215
AMD 378.656912
ANG 1.79008
AOA 916.999995
ARS 1444.5061
AUD 1.42104
AWG 1.80125
AZN 1.703701
BAM 1.633386
BBD 2.013103
BDT 122.138616
BGN 1.67937
BHD 0.376968
BIF 2960.735925
BMD 1
BND 1.261227
BOB 6.906746
BRL 5.197202
BSD 0.999495
BTN 91.809686
BWP 13.078391
BYN 2.841896
BYR 19600
BZD 2.010222
CAD 1.35408
CDF 2240.000163
CHF 0.765525
CLF 0.021855
CLP 862.939783
CNY 6.95465
CNH 6.94074
COP 3670.36
CRC 496.072757
CUC 1
CUP 26.5
CVE 92.086637
CZK 20.29245
DJF 177.719931
DKK 6.235745
DOP 62.885991
DZD 129.171921
EGP 46.837506
ERN 15
ETB 155.421337
EUR 0.83513
FJD 2.1911
FKP 0.725629
GBP 0.72366
GEL 2.695061
GGP 0.725629
GHS 10.924686
GIP 0.725629
GMD 73.000235
GNF 8770.633161
GTQ 7.668217
GYD 209.112281
HKD 7.80161
HNL 26.37704
HRK 6.2933
HTG 130.891386
HUF 317.563026
IDR 16741.65
ILS 3.097875
IMP 0.725629
INR 92.04105
IQD 1309.331429
IRR 42125.000158
ISK 120.909983
JEP 0.725629
JMD 156.680488
JOD 0.709025
JPY 153.081999
KES 129.000187
KGS 87.450173
KHR 4017.905611
KMF 412.000074
KPW 899.941848
KRW 1427.75028
KWD 0.30645
KYD 0.832978
KZT 503.603671
LAK 21533.681872
LBP 89506.589387
LKR 309.494281
LRD 184.910514
LSL 15.892551
LTL 2.95274
LVL 0.60489
LYD 6.276907
MAD 9.037126
MDL 16.761456
MGA 4459.737093
MKD 51.481981
MMK 2099.981308
MNT 3572.641598
MOP 8.032705
MRU 39.899616
MUR 45.090023
MVR 15.460024
MWK 1733.186347
MXN 17.16525
MYR 3.918993
MZN 63.759786
NAD 15.892618
NGN 1394.459919
NIO 36.779996
NOK 9.574604
NPR 146.893491
NZD 1.65069
OMR 0.384496
PAB 0.999516
PEN 3.344329
PGK 4.278419
PHP 58.780105
PKR 279.608654
PLN 3.512035
PYG 6712.014732
QAR 3.634154
RON 4.256097
RSD 98.041985
RUB 76.546829
RWF 1458.255038
SAR 3.750365
SBD 8.077676
SCR 13.753586
SDG 601.498846
SEK 8.82156
SGD 1.261875
SHP 0.750259
SLE 24.303915
SLL 20969.499267
SOS 570.233129
SRD 38.092028
STD 20697.981008
STN 20.460913
SVC 8.745579
SYP 11059.574895
SZL 15.88602
THB 31.139852
TJS 9.34036
TMT 3.5
TND 2.858467
TOP 2.40776
TRY 43.413099
TTD 6.783978
TWD 31.282102
TZS 2560.000284
UAH 42.724642
UGX 3578.571995
UYU 37.82346
UZS 12092.817384
VES 358.47615
VND 26065
VUV 119.671185
WST 2.725359
XAF 547.815484
XAG 0.008493
XAU 0.000182
XCD 2.70255
XCG 1.801312
XDR 0.68021
XOF 547.813197
XPF 99.5983
YER 238.393717
ZAR 15.709905
ZMK 9001.201624
ZMW 19.865039
ZWL 321.999592
  • SCS

    0.0200

    16.14

    +0.12%

  • CMSC

    -0.1000

    23.7

    -0.42%

  • RIO

    0.4600

    93.37

    +0.49%

  • RBGPF

    0.0000

    82.4

    0%

  • BCC

    -0.8900

    80.85

    -1.1%

  • BCE

    -0.2500

    25.27

    -0.99%

  • CMSD

    -0.0457

    24.0508

    -0.19%

  • BTI

    -0.1800

    60.16

    -0.3%

  • RYCEF

    -0.5500

    16.6

    -3.31%

  • JRI

    -0.6900

    12.99

    -5.31%

  • VOD

    0.0700

    14.57

    +0.48%

  • GSK

    -0.7000

    50.1

    -1.4%

  • BP

    0.0800

    37.7

    +0.21%

  • RELX

    -0.9800

    37.38

    -2.62%

  • NGG

    0.3700

    84.68

    +0.44%

  • AZN

    -2.3800

    93.22

    -2.55%

Webb telescope spots its first star -- and takes a selfie
Webb telescope spots its first star -- and takes a selfie

Webb telescope spots its first star -- and takes a selfie

Star light, star bright, the James Webb Space Telescope has seen its first star (though it wasn't quite tonight) -- and even taken a selfie, NASA announced Friday.

Text size:

The steps are part of the months-long process of aligning the observatory's enormous golden mirror that astronomers hope will begin unraveling the mysteries of the early Universe by this summer.

The first picture sent back of the cosmos is far from stunning: 18 blurry white dots on a black background, all showing the same object: HD 84406 a bright, isolated star in the constellation Ursa Major.

But in fact it represents a major milestone. The 18 dots were captured by the primary mirror's 18 individual segments -- and the image is now the basis for aligning and focusing those hexagonal pieces.

The light bounced off the segments to Webb's secondary mirror, a round object located at the end of long booms, and then to the Near Infrared Camera (NIRCam) instrument -- Webb's main imaging device.

"The entire Webb team is ecstatic at how well the first steps of taking images and aligning the telescope are proceeding," said Marcia Rieke, principal investigator for the NIRCam instrument and regents professor of astronomy, University of Arizona, in a statement.

"We were so happy to see that light make its way into NIRCam."

The image capturing process began on February 2, with Webb pointing at different positions around the predicted location of the star.

Though Webb's initial search covered an area of the sky about equal to the size of the full Moon, the dots were all located near the center portion, meaning the observatory is already relatively well positioned for final alignment.

To aid the process, the team also captured a "selfie" taken not through an externally mounted camera but through a special lens on board NIRCam.

NASA had previously said a selfie wasn't possible, so the news comes as a welcome bonus for space fans.

"I think pretty much the reaction was holy cow," Lee Feinberg, Webb optical telescope element manager, told reporters in a call, explaining that the team wasn't sure it was possible to obtain such an image using starlight alone.

The $10 billion observatory launched from French Guiana on December 25 and is now in an orbit that is aligned with the Earth's around the Sun, one million miles (1.5 million kilometers away) from our planet, in a region of space called the second Lagrange point.

Webb will begin its science mission by summer, which includes using its high resolution instruments to peer back in time 13.5 billion years to the first generation of galaxies that formed after the Big Bang.

Visible and ultraviolet light emitted by the very first luminous objects has been stretched by the Universe's expansion, and arrives today in the form of infrared, which Webb is equipped to detect with unprecedented clarity.

Its mission also includes the study of distant planets, known as exoplanets, to determine their origin, evolution and habitability.

J.Ayala--TFWP