Zürcher Nachrichten - What are attoseconds? Nobel-winning physics explained

EUR -
AED 4.248105
AFN 75.770596
ALL 92.762559
AMD 422.720519
ANG 2.0703
AOA 1061.880869
ARS 1706.354669
AUD 1.637736
AWG 2.083564
AZN 1.971037
BAM 1.955432
BBD 2.326962
BDT 141.823334
BGN 1.962242
BHD 0.435718
BIF 3453.950583
BMD 1.156733
BND 1.477822
BOB 13.465468
BRL 6.040925
BSD 1.155383
BTN 110.192281
BWP 15.565073
BYN 3.514139
BYR 22671.957183
BZD 2.323663
CAD 1.60514
CDF 2629.253412
CHF 0.941015
CLF 0.026895
CLP 1056.7913
CNY 7.800083
CNH 7.801606
COP 3603.822404
CRC 519.802266
CUC 1.156733
CUP 30.653411
CVE 110.244272
CZK 24.210763
DJF 205.741316
DKK 7.473191
DOP 67.627285
DZD 152.299364
EGP 57.668157
ERN 17.350988
ETB 186.897659
FJD 2.584377
FKP 0.853399
GBP 0.855002
GEL 3.019524
GGP 0.853399
GHS 12.651621
GIP 0.853399
GMD 85.024294
GNF 10149.091752
GTQ 8.815343
GYD 241.67456
HKD 9.077054
HNL 30.972177
HRK 7.532994
HTG 151.121586
HUF 363.017812
IDR 20622.34285
ILS 3.418265
IMP 0.853399
INR 110.410701
IQD 1513.515426
IRR 1590030.052589
ISK 142.166837
JEP 0.853399
JMD 182.965599
JOD 0.820169
JPY 184.272161
KES 149.331922
KGS 101.156702
KHR 4675.120976
KMF 493.925187
KPW 1041.059598
KRW 1638.477341
KWD 0.357061
KYD 0.962819
KZT 536.1092
LAK 26076.097131
LBP 103462.246866
LKR 384.457714
LRD 209.700572
LSL 18.691186
LTL 3.415531
LVL 0.699696
LYD 7.356617
MAD 10.715985
MDL 20.034233
MGA 4974.064769
MKD 61.518433
MMK 2428.743274
MNT 4161.410395
MOP 9.338444
MRU 46.399276
MUR 54.486429
MVR 17.871955
MWK 2003.423313
MXN 19.69164
MYR 4.726298
MZN 73.927211
NAD 18.691186
NGN 1572.659254
NIO 42.522005
NOK 10.922567
NPR 176.30785
NZD 1.963226
OMR 0.444768
PAB 1.155383
PEN 3.896867
PGK 5.190024
PHP 71.098608
PKR 320.900664
PLN 4.306226
PYG 6934.696128
QAR 4.211808
RON 5.236186
RSD 117.317942
RUB 97.377191
RWF 1698.980555
SAR 4.340955
SBD 9.310058
SCR 15.912008
SDG 694.622124
SEK 11.020235
SGD 1.480159
SHP 0.856984
SLE 28.344188
SLL 24256.10146
SOS 660.275854
SRD 43.926343
STD 23942.02751
STN 24.495394
SVC 10.109099
SYP 15039.835978
SZL 18.688486
THB 38.337629
TJS 10.669694
TMT 4.060131
TND 3.387463
TOP 2.785134
TRY 55.369898
TTD 7.827528
TWD 37.04043
TZS 3061.72433
UAH 51.684982
UGX 4292.192975
USD 1.156733
UYU 46.291296
UZS 13754.413873
VES 890.810236
VND 30246.82002
VUV 137.249116
WST 3.163007
XAF 655.833689
XAG 0.017878
XAU 0.000264
XCD 3.126128
XCG 2.082208
XDR 0.81787
XOF 655.833689
XPF 119.331742
YER 274.381102
ZAR 18.703474
ZMK 10411.984809
ZMW 21.835894
ZWL 372.467396
  • CMSC

    -0.0250

    21.45

    -0.12%

  • RBGPF

    0.0000

    71.34

    0%

  • RYCEF

    0.1300

    20.84

    +0.62%

  • RELX

    -0.2400

    34.43

    -0.7%

  • BCE

    0.1500

    23.47

    +0.64%

  • BTI

    -0.2900

    57.06

    -0.51%

  • AZN

    -0.7900

    156.45

    -0.5%

  • CMSD

    -0.0100

    21.58

    -0.05%

  • NGG

    -0.1500

    81.05

    -0.19%

  • RIO

    -0.4100

    95.68

    -0.43%

  • GSK

    -0.4785

    49.52

    -0.97%

  • JRI

    0.0635

    12.61

    +0.5%

  • BCC

    -0.8900

    83.24

    -1.07%

  • VOD

    0.2000

    16.42

    +1.22%

  • BP

    0.2196

    42.53

    +0.52%

What are attoseconds? Nobel-winning physics explained
What are attoseconds? Nobel-winning physics explained / Photo: Andreas HILLERGREN - TT News Agency/AFP

What are attoseconds? Nobel-winning physics explained

The Nobel Physics Prize was awarded on Tuesday to three scientists for their work on attoseconds, which are almost unimaginably short periods of time.

Text size:

Their work using lasers gives scientists a tool to observe and possibly even manipulate electrons, which could spur breakthroughs in fields such as electronics and chemistry, experts told AFP.

- How fast are attoseconds? -

Attoseconds are a billionth of a billionth of a second.

To give a little perspective, there are around as many attoseconds in a single second as there have been seconds in the 13.8-billion year history of the universe.

Hans Jakob Woerner, a researcher at the Swiss university ETH Zurich, told AFP that attoseconds are "the shortest timescales we can measure directly".

- Why do we need such speed? -

Being able to operate on this timescale is important because these are the speeds at which electrons -- key parts of an atom -- operate.

For example, it takes electrons 150 attoseconds to go around the nucleus of a hydrogen atom.

This means the study of attoseconds has given scientists access to a fundamental process that was previously out of reach.

All electronics are mediated by the motion of electrons -- and the current "speed limit" is nanoseconds, Woerner said.

If microprocessors were switched to attoseconds, it could be possible to "process information a billion times faster," he added.

- How do you measure them? -

Franco-Swede physicist Anne L'Huillier, one of the three new Nobel laureates, was the first to discover a tool to pry open the world of attoseconds.

It involves using high-powered lasers to produce pulses of light for incredibly short periods.

Franck Lepine, a researcher at France's Institute of Light and Matter who has worked with L'Huillier, told AFP it was like "cinema created for electrons".

He compared it to the work of pioneering French filmmakers the Lumiere brothers, "who cut up a scene by taking successive photos".

John Tisch, a laser physics professor at Imperial College London, said that it was "like an incredibly fast, pulse-of-light device that we can then shine on materials to get information about their response on that timescale".

- How low can we go? -

All three of Tuesday's laureates at one point held the record for shortest pulse of light.

In 2001, French scientist Pierre Agostini's team managed to flash a pulse that lasted just 250 attoseconds.

L'Huillier's group beat that with 170 attoseconds in 2003.

In 2008, Hungarian-Austrian physicist Ferenc Krausz more than halved that number with an 80-attosecond pulse.

The current holder of the Guinness World Record for "shortest pulse of light" is Woerner's team, with a time of 43 attoseconds.

The time could go as low as a few attoseconds using current technology, Woerner estimated. But he added that this would be pushing it.

- What could the future hold? -

Technology taking advantage of attoseconds has largely yet to enter the mainstream, but the future looks bright, the experts said.

So far, scientists have mostly only been able to use attoseconds to observe electrons.

"But what is basically untouched yet -- or is just really beginning to be possible -- is to control" the electrons, to manipulate their motion, Woerner said.

This could lead to far faster electronics as well as potentially spark a revolution in chemistry.

So-called "attochemistry" could lead to more efficient solar cells, or even the use of light energy to produce clean fuels, he added.

U.Ammann--NZN