FP7Individual fellowship2013–2015

GlassQD · Glassy Quantum Dynamics in Strongly Interacting Ultracold Atomic Gases

FP7 — People (Marie Curie Actions)

Duration
2013-04-02 → 2015-04-01
EU contribution
€200,372
Participants
1
Scheme
MC-IEF

Lines connect the coordinator with its partners.

Results in brief

Glassy Quantum Dynamics in Strongly Interacting Ultracold Atomic Gases

The aim of the work was to understand, probe and exploit equilibrium and non-equilibrium phenomena in structured gases of highly excited atoms, with particular focus on quantum glassy phenomena. Not all of the objectives have been achieved due to an early termination of the contract by the fellow. Nevertheless, the research undertaken has led to one publication in which the out-of-equilibrium behaviour of trapped ions was studied and experimental measurement methods for its study were proposed. The contribution of the fellow was the calculation of the atomic structure of the trapped ions and its manipulation by external laser field. This has resulted in a scheme with which the dissipation and therefore the non-equilibrium dynamics of the trapped ions can be controlled and monitored.

Data: CORDIS, © European Union

Project objective

This project brings together two international researchers, Dr. Cenap Ates from Germany and a dedicated, enthusiastic Scientist-in-Charge Dr. Igor Lesanovsky at the University of Nottingham, UK, to carry out internationally competitive research. The project will work on understanding, probing and exploiting equilibrium and non-equilibrium phenomena in structured gases of highly excited atoms, with particular focus on quantum glasses. This research will benefit Dr. Cenap Ates career development by becoming an expert of atomic and condensed matter physics and raising his profile in an international level. The host institution and the scientist in charge will benefit from this project and Cenap Ates presence by enriching the research areas and international collaborations. The European Research Area will benefitfrom the project because the results will provide insights into the understanding of quantum matter out of equilibrium. In the long term this will promote practical applications such as the development of new materials with exotic properties and thus enhance the competitive edge. The research will emphasize the leadership of Europe in this field and create an ever widening gap between European Research Area and other regions.

Original text from CORDIS.

Participants

Links

Data: CORDIS, © European Union