ERC-Advanced grant voor Wim Ubachs


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Contactperso(o)n(en): Melissa Vianen
Weblocatie: http://www.fom.nl/live/nieuws/archief_persberichten/persberichten2015/artikel.pag?objectnumber=297246
printerversie
7 mei 2015

ERC-Advanced grant voor Wim Ubachs

FOM-werkgroepleider prof.dr. Wim Ubachs ontvangt een Advanced Grant van de European Research Council (ERC) van 2,5 miljoen euro voor zijn onderzoeksvoorstel 'Physics Beyond the Standard Model from Molecules', waarin hij voorstelt om zowel uiterst precieze lasermetingen te verrichten aan het
waterstofmolecuul (in LaserLaB VU) als ook waarnemingen te doen met optische en radiotelescopen aan moleculen in de ruimte.
Wim Ubachs
vergroten Wim Ubachs
Foto: Ivar Pel
Doel is om moderne fysische theorieen te testen en mogelijk afwijkingen te vinden, die ons iets leren over het bestaan van extra dimensies en of natuurwetten varieren in de tijd of afhangen van bepaalde omstandigheden (zoals sterke zwaartekrachtsvelden).

Samenvatting van het onderzoeksvoorstel (in English)
The Standard Model of physics is incomplete. Gravity is not understood at the quantum level, dark matter and dark energy are not explained, and (string-)theories searching to cover these shortcomings are only consistent in higher-dimensional spaces, while only four of those dimensions are
observed. The mystery of finely tuned strengths of the fundamental forces, providing us with a Universe of complexity, remains unexplained. This calls for new physics that can be explored also at the atomic scale in the low energy domain. That is the paradigm underlying the present proposal:
Effects of new physics - either related to hitherto unknown particles or to symmetry-breaking phenomena - will manifest themselves as minute shifts in the quantum level structures of atoms and molecules, in minute drifts over time or dependencies on environmental conditions.

I propose to perform precision metrology measurements on the H2 molecule in a search for new physics. Deviations between experimental results and QED-theory will scan unexplored territory beyond the Standard Model. Molecular metrology results of the fundamental ground tone vibration in H2 will
be confronted with QED-theory calculations to search for the existence of new forces at the Angstroem length scale. If extra dimensions beyond the known 3+1 would be compactified at the same length scale of 1 AA, this would lead to strongly enhanced gravitational effects, measurable in a
molecule. Our current research on experimental probes for varying constants on a cosmological time scale, is redirected into the investigation of chameleon scenarios: by studying H2 molecules in white dwarf stars by uv-astronomy, and by studying methanol molecules in our own galaxy by radio
astronomy, searching for a possible dependence of fundamental constants on strong gravity or on density.

If any of these targeted phenomena could be uncovered, it would have great impact on science as a whole, and on our view on the Universe and its origin.

Over Wim Ubachs
Wim Ubachs is hoogleraar aan de Vrije Universiteit Amsterdam, groepsleider bij het Advanced Research Center for Nanolithography (ARCNL) en geeft leiding aan het Vrije FOM-programma 'Broken mirrors & drifting constants' dat in 2011 van start is gegaan.