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“Testing Gravity”
Hinrich MeyerUni. of Wuppertal
withW. Bartel, B. Löhr, E. Lohrmann
and S. Schubert
Gravitation im Labor
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1.) Astronomy and Astrophysics
2.) Experiments in the laboratory
Outline:
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anno 1632
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The are more things in heaven and earth,Horatio,
Than are dreamt of in your philosophy
Hamlet Act1,
scene5
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BBN successfully describing light element abundances in
the universeall but H
missing baryon problemFukugita, Peebles 1988
(BUT!!!!!)
Q: how much matter there is in the Universe???
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XMM NewtonESA X-RAYSatellite
observingmissing
baryon fractionsolved??
Text
also spectral lines from intergalactic clouds
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virial lawE(kin)=-1/2E(pot)
Helvetica Physica Acta1933
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Vera Rubin 1970, with K. Ford
Rotation curves a generalphenomenon
Andromeda M31
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Spiral Galaxies
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Scarpa, Gilmozzi, et al. 2006, globular clusters
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In the solar system??
at least two dramatic effects
a: “Pioneer” anamoly
b: “fly by” effect
again seem to be ruled bya(0) about cH!!
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F(grav)=GmM/r2
Newtons law
rules all bound systems in the universe
a: change M , by introducing CDM
b: change accel. by introducing a(0) at very small accel. a MONDactually, a(0) is about cH
c: adding an Yukawa like term at very small distance
d: consider G to be time dependent
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“MOND”Milgrom 1983nonrelativistic
“TeVeS”Bekenstein 2004
relativistic extension
Proposals, to change Newtons Law
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Sanders, Noordmeerearly type disks
2007
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dwarf spheroidals
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Sanders, 1996
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MOND works:however
needsNeutrinos with mass
seeZhao 2007
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Thus, it is my personal opinion – and I am the only one responsible for it if proved wrong-- that if Newtonian dynamics fails below a0, this should be true irrespectively of the total field and one should be able to observe MOND effect also here on earth. For instance, I think a refined version of the Cavendish experiment studying gravitational forces in the horizontal plane should detect MOND effects.
R. Scarpa 2006
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Laboratory experiments
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fieldmass560kg
now only5-40kg
thesis work bySchurr, Walesh, Schumacher,
Kleinevoss1992 - 2002with H. Piel
Univ. of Wuppertal
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db =df const
const=10-9
(m/kHz)thesisH. Walesch
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2006recent “G” results
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Earthquake signal in GRAVI
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TextTextText
Noisenicely
Gaussian,very
crucial
frequencyvs.
time
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“Gravi” at DESY works!!! (18.6.2008)127Hz in 22GHz (1/10 nm)
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Goals with “GRAVI” at DESY
a: measurements in theMOND region
b: accurate determinationof big “G”
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blue line prefered by astrophysical considerations
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Schlamminger et al.Zürich
G measurment
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Eötwash
AdelbergersgroupSeattle
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equivalence principle
testSchlamminger et
al.2008
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fascinating timestesting
GRAVITYin the lab
I like to thank DESYfor unbureaucratic
support