Zürcher Nachrichten - Direct impact or nuclear weapons? How to save Earth from an asteroid

EUR -
AED 4.238329
AFN 75.597361
ALL 92.954598
AMD 422.471461
AOA 1058.284223
ARS 1722.537298
AUD 1.634385
AWG 2.07733
AZN 1.964452
BAM 1.955897
BBD 2.323715
BDT 142.427045
BHD 0.435031
BIF 3448.945305
BMD 1.154072
BND 1.477673
BOB 13.700678
BRL 5.953051
BSD 1.153657
BTN 110.051827
BWP 15.57277
BYN 3.420443
BYR 22619.812825
BZD 2.320365
CAD 1.607628
CDF 2620.322368
CHF 0.935866
CLF 0.026796
CLP 1054.659959
CNY 7.787218
CNH 7.785718
COP 3604.259441
CRC 523.137208
CUC 1.154072
CUP 30.58291
CVE 110.270454
CZK 24.255191
DJF 205.450162
DKK 7.475842
DOP 67.273327
DZD 153.364679
EGP 57.910874
ERN 17.311081
ETB 186.61713
FJD 2.550733
FKP 0.853294
GBP 0.854362
GEL 3.012258
GGP 0.853294
GHS 13.573671
GIP 0.853294
GMD 84.826641
GNF 10131.501126
GTQ 8.801435
GYD 241.621951
HKD 9.055335
HNL 30.92353
HRK 7.533827
HTG 150.847461
HUF 364.712152
IDR 20575.951166
ILS 3.459097
IMP 0.853294
INR 110.054911
IQD 1511.374756
IRR 1586531.743866
ISK 142.00892
JEP 0.853294
JMD 182.529028
JOD 0.818234
JPY 183.76694
KES 149.244255
KGS 100.923698
KHR 4674.231198
KMF 491.635296
KRW 1629.757392
KWD 0.356481
KYD 0.961448
KZT 538.058269
LAK 26030.287514
LBP 103314.510158
LKR 385.799082
LRD 208.2403
LSL 18.722226
LTL 3.407674
LVL 0.698087
LYD 7.357364
MAD 10.688829
MDL 20.039991
MGA 4964.245542
MKD 61.523043
MMK 2422.902464
MNT 4148.659183
MOP 9.324161
MRU 46.113281
MUR 54.287648
MVR 17.829926
MWK 2000.498949
MXN 19.750865
MYR 4.722344
MZN 73.750974
NAD 18.722226
NGN 1572.572858
NIO 42.4521
NOK 10.966627
NPR 176.078709
NZD 1.962586
OMR 0.443744
PAB 1.153657
PEN 3.900293
PGK 5.177256
PHP 70.603841
PKR 320.24024
PLN 4.300338
PYG 6869.339772
QAR 4.205708
RON 5.238103
RSD 117.35995
RUB 95.154496
RWF 1699.384055
SAR 4.322988
SBD 9.308395
SCR 15.797785
SDG 693.018932
SEK 10.978283
SGD 1.477363
SLE 28.390297
SOS 659.332612
SRD 43.792425
STD 23886.962054
STN 24.501212
SVC 10.094499
SZL 18.711331
THB 38.215916
TJS 10.631426
TMT 4.050793
TND 3.387468
TRY 55.095173
TTD 7.813556
TWD 37.205557
TZS 3064.059083
UAH 51.76436
UGX 4292.212302
USD 1.154072
UYU 46.452298
UZS 13717.678506
VES 872.204288
VND 30163.404995
VUV 137.158905
WST 3.154924
XAF 655.989447
XAG 0.017761
XAU 0.000263
XCD 3.118937
XCG 2.079348
XDR 0.815452
XOF 655.989447
XPF 119.331742
YER 275.135581
ZAR 18.687376
ZMK 10388.036652
ZMW 21.63207
ZWL 371.61074
  • RYCEF

    -0.2800

    20.57

    -1.36%

  • BCC

    0.6900

    85.44

    +0.81%

  • RBGPF

    -0.6200

    69.88

    -0.89%

  • NGG

    0.6800

    80.16

    +0.85%

  • RIO

    -0.9450

    100.965

    -0.94%

  • CMSC

    -0.0460

    21.524

    -0.21%

  • BCE

    0.6900

    23.23

    +2.97%

  • RELX

    -0.1550

    35.465

    -0.44%

  • GSK

    -1.0200

    51.14

    -1.99%

  • AZN

    -2.3700

    159.54

    -1.49%

  • JRI

    0.0100

    12.74

    +0.08%

  • VOD

    0.1710

    15.921

    +1.07%

  • CMSD

    0.0200

    21.71

    +0.09%

  • BP

    0.3400

    43.22

    +0.79%

  • BTI

    -0.1150

    56.935

    -0.2%

Direct impact or nuclear weapons? How to save Earth from an asteroid
Direct impact or nuclear weapons? How to save Earth from an asteroid / Photo: Sophie RAMIS - AFP

Direct impact or nuclear weapons? How to save Earth from an asteroid

NASA's DART mission to test deflecting an asteroid using "kinetic impact" with a spaceship is just one way to defend planet Earth from an approaching object -- and for now, the only method possible with current technology.

Text size:

The operation is like playing billiards in space, using Newton's laws of motion to guide us.

If an asteroid threat to Earth were real, a mission might need to be launched a year or two in advance to take on a small asteroid, or decades ahead of projected impact for larger objects hundreds of kilometers in diameter that could prove catastrophic to the planet.

Or, a larger object might require hits with multiple spacecraft.

"This demonstration will start to add tools to our toolbox of methods that could be used in the future," said Lindley Johnson, NASA's planetary defense office, in a recent briefing.

Other proposed ideas have included a futuristic-sounding "gravity tractor," or a mission to blow up the hypothetical object with a nuclear weapon -- the method preferred by Hollywood.

- Gravity tractor -

Should an approaching object be detected early -- years or decades before it would hit Earth -- a spaceship could be sent to fly alongside it for long enough to divert its path via using the ship's gravitational pull, creating a so-called gravity tractor.

This method "has the virtue that the method of moving the asteroid is totally well understood -- it's gravity and we know how gravity works," Tom Statler, a DART program scientist at NASA said at a briefing last November when DART launched.

The mass of the spacecraft however would be a limiting factor -- and gravity tractors would be less effective for asteroids more than 500 meters in diameter, which are the very ones that pose the greatest threat.

In a 2017 paper, NASA engineers proposed a way to overcome this snag: by having the spacecraft scoop material from the asteroid to enhance its own mass, and thus, gravity.

But none of these concepts have been tried, and would need decades to build, launch and test.

- Nuclear detonation -

Another option: launching nuclear explosives to redirect or destroy an asteroid.

"This may be the only strategy that would be effective for the largest and most dangerous 'planet-killer' asteroids (more than one kilometer in diameter)," a NASA article on the subject says, adding such a strike might be useful as a "last resort" in case the other methods fail.

But these weapons are geopolitically controversial and technically banned from use in outer space.

Lori Glaze, NASA's planetary science division director said in a 2021 briefing that the agency believed the best way to deploy the weapons would be at a distance from an asteroid, in order to impart force on the object without blowing it into smaller pieces that could then multiply the threat to Earth.

A 2018 paper published in the "Journal of Experimental and Theoretical Physics" by Russian scientists looked at the direct detonation scenario.

E. Yu. Aristova and colleagues built miniature asteroid models and blasted them with lasers. Their experiments showed that blowing up a 200-meter asteroid would require a bomb 200 times as powerful as the one that exploded over Hiroshima in 1945.

They also said it would be most effective to drill into the asteroid, bury the bomb, then blow it up -- just like in the movie Armageddon.

R.Bernasconi--NZN