Allan Adams: What the discovery of gravitational waves means
Alans Adamss: Ko nozīmē gravitācijas viļņu atklāšana?
Allan Adams is a theoretical physicist working at the intersection of fluid dynamics, quantum field theory and string theory. Full bio
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matēriju trīs sauļu apjomā.
their energy in light.
enerģija neizdalījās kā gaisma.
into the fabric of space and time itself,
pašas laiktelpas audumā,
in gravitational waves.
gravitācijas viļņos.
of the timescale at work here.
laika skalu, par ko runājam.
multicellular life.
daudzšūnu dzīvības formas.
ir radušies un attīstījušies
and even -- God save us -- the Internet.
un pat – pasarg, Dievs! – internets.
and Ronald Drever at Caltech --
un Ronalds Drēvers no Caltech –
for the gravitational waves
saduroties melnajiem caurumiem.
that they were brilliant nuts
ka viņi ir ģeniāli ķertie,
decided to fund their crazy idea.
nolemtu viņu trako ideju finansēt.
Gravitational-Wave Observatory.
gravitācijas viļņu observatoriju.
a huge expansion in its accuracy,
in its detection ability.
savā uztveršanas spējā,
par Augsta līmeņa LIGO.
a few lingering details.
vēl daži atlikušie sīkumi.
had gone live,
pēc detektora ieslēgšanas,
from those colliding black holes
izraisītie gravitācijas viļņi
Manā dzīvē ir bijuši divi
There's two moments in my life
to my father when he was terminally ill.
no sava neārstējami slimā tēva.
of my career, basically.
manas karjeras zvaigžņu stunda.
it's no longer science fiction! (Laughs)
tā vairs nebija zinātniskā fantastika!
and collaborator, Scott Hughes,
draugs un kolēģis Skots Hjūzs,
gravitational waves from black holes
izraisītos gravitācijas viļņus
on observatories like LIGO,
tādās observatorijās kā LIGO
what I mean by a gravitational wave.
ko domāju ar gravitācijas vilni.
of general relativity
vispārīgās relativitātes pasniedzēji
in their classes on general relativity.
izpilda šo varen muļķīgo deju:
it stretches and expands."
tā izstiepjas un izplešas.”
they're preposterously weak.
tie ir nejēdzīgi vāji.
on September 14 --
kas skāra mūs 14. septembrī,
stretched and compressed
pastiepās un saspiedās
the average person
the LIGO people were nuts.
uzskatīja par ķertiem.
long -- and that's already crazy --
lāzerdetektoru, kas jau ir gana traki,
the length of those detectors
of the radius of the nucleus
nekā viena tūkstošā daļa
of his classic text on gravity,
par gravitāti beigās
for gravitational waves as follows:
aprakstīja šādi:
to be surmounted
of a broad lay public,
acts like an ear
ka LIGO vairāk darbojas kā auss,
viļņa garums, izmērs,
than the things around you,
nekā apkārt esošās lietas,
or a map of the things around you,
attēlu vai karti,
coming from different spots
apkārtējās telpas vietām.
that can be up to 50 feet long.
var būt līdz pat 15 metriem.
praktiskā nozīmē neiespējami,
impossible -- to make an image
to listen for features like pitch
lai saklausītu augstumu,
of gravitational waves.
of things out in the Universe.
vienkāršu Visuma attēlu radīšanai.
amplitūdas un frekvences izmaiņās,
of those waves,
that those waves are telling.
are in the audio band.
atrodas skaņu frekvences diapazonā.
into pressure waves and air, into sound,
spiediena viļņos gaisā, proti, skaņā,
the Universe speaking to us.
kā ar mums runā Visums.
just in this way,
of two black holes,
par divu melno caurumu sadursmi;
an awful lot of time thinking about.
ir pavadījis bezgala daudz laika.
are non-spinning,
melnie caurumi negriežas,
very rapidly, I have that same chirp,
ir tas pats čirksts,
imprinted on this waveform.
kas ietverts šajā viļņa formā.
going to live in my memory,
that is the sound of --
katrs no tiem apmēram 30 sauļu svarā,
each of about 30 solar masses,
in your blender.
to think about what that means.
lai padomātu, ko tas nozīmē.
in the Universe,
Visuma visblīvākie objekti,
100 times per second
100 reizes sekundē,
to observe the Universe
kā vērot Visumu,
that we can't see --
stars explode in supernovae.
kāpēc milzu zvaigznes eksplodē pārnovās.
about the Universe from them.
ļoti daudz par Visumu.
physics happens in the core,
interesantā fizika notiek kodolā,
thousands of kilometers
aiz tūkstošiem kilometru
tas ir gaismas necaurlaidīgs.
it's opaque to light.
as if it were glass --
it kā tas būtu stikls,
to be able to explore
es ļoti gribētu spēt izpētīt
is obscured by its own afterglow.
paša sprādziena atblāzma.
all the way back to the beginning.
ieskatīties līdz pat pirmsākumiem.
are things out there
discover by listening.
in that very first event,
members of the LIGO collaboration,
LIGO sadarbības biedriem, Mets Evanss,
addressing exactly that:
which produce the black holes
kas rada tādus melnos caurumus,
that are old, from prehistoric times,
no aizvēsturiskiem laikiem,
the dinosaur bones
ir kā dinozauru kauli,
a whole nother angle
and in the end, of course,
kā visā šajā juceklī radāmies mēs.
to build exquisite detectors
kā uzbūvēt izcilus detektorus,
new observatories --
un uzbūvēt jaunas observatorijas,
than listening to the Big Bang itself?
nekā dzirdēt pašu Lielo sprādzienu?
ir sapņot lielus sapņus.
ABOUT THE SPEAKER
Allan Adams - Theoretical physicistAllan Adams is a theoretical physicist working at the intersection of fluid dynamics, quantum field theory and string theory.
Why you should listen
Allan Adams is a theoretical physicist working at the intersection of fluid dynamics, quantum field theory and string theory. His research in theoretical physics focuses on string theory both as a model of quantum gravity and as a strong-coupling description of non-gravitational systems.
Like water, string theory enjoys many distinct phases in which the low-energy phenomena take qualitatively different forms. In its most familiar phases, string theory reduces to a perturbative theory of quantum gravity. These phases are useful for studying, for example, the resolution of singularities in classical gravity, or the set of possibilities for the geometry and fields of spacetime. Along these lines, Adams is particularly interested in microscopic quantization of flux vacua, and in the search for constraints on low-energy physics derived from consistency of the stringy UV completion.
In other phases, when the gravitational interactions become strong and a smooth spacetime geometry ceases to be a good approximation, a more convenient description of string theory may be given in terms of a weakly-coupled non-gravitational quantum field theory. Remarkably, these two descriptions—with and without gravity—appear to be completely equivalent, with one remaining weakly-coupled when its dual is strongly interacting. This equivalence, known as gauge-gravity duality, allows us to study strongly-coupled string and quantum field theories by studying perturbative features of their weakly-coupled duals. Gauge-gravity duals have already led to interesting predictions for the quark-gluon plasma studied at RHIC. A major focus of Adams's present research is to use such dualities to find weakly-coupled descriptions of strongly-interacting condensed matter systems which can be realized in the lab.Allan Adams | Speaker | TED.com