APPSG

Holographic applications of supergravity

 Coordinatore ECOLE POLYTECHNIQUE 

 Organization address address: ROUTE DE SACLAY
city: PALAISEAU
postcode: 91128

contact info
Titolo: Ms.
Nome: Aurelie
Cognome: Eray
Email: send email
Telefono: 33169333254
Fax: 33169333289

 Nazionalità Coordinatore France [FR]
 Totale costo 372˙677 €
 EC contributo 372˙677 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2012-IOF
 Funding Scheme MC-IOF
 Anno di inizio 2013
 Periodo (anno-mese-giorno) 2013-10-01   -   2016-09-30

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    ECOLE POLYTECHNIQUE

 Organization address address: ROUTE DE SACLAY
city: PALAISEAU
postcode: 91128

contact info
Titolo: Ms.
Nome: Aurelie
Cognome: Eray
Email: send email
Telefono: 33169333254
Fax: 33169333289

FR (PALAISEAU) coordinator 372˙677.30

Mappa


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models    quantum    string    classes    supergravity    theory    theories    holographic   

 Obiettivo del progetto (Objective)

'In this project we will develop supergravity tools to study the strong coupled sectors of High Energy and Condensed Matter systems using the gauge gravity duality. We will first find, via consistent truncation, new large classes of lower-dimensional supergravity models that admit an exact string theory embedding, and will fully characterise and classify them. We will use these theories to propose, on the one hand, novel models of holographic superconductors and quantum critical points, and draw concrete string theory predictions about their properties. We will also use these model to pursue an all-time novel, holographic description of (quantum) turbulence. On the other hand, we will build supergravity models dual to large classes of field theories displaying phenomenologically realistic features like confinement and chiral symmetry breaking, thus considerably expanding the currently available string-derived QCD-like models.'

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