Leioa
Postdoctoral Research Fellow on Generation and Detection of Entanglement in Quantum Optical Systems (GEDENTQOPT ERC project)
Applications are invited for postdoctoral position linked to a five year project on the topic of Generation and detection of quantum entanglement as part of an European Research Council Starting grant (GEDENTQOPT project). The project is conducted at the Department of Theoretical Physics of the University of the Basque Country at Leioa. The aim of the research project is to develop new concepts for understanding, identifying, and quantifying quantum entanglement in quantum optical systems, connected to recent experiments.
Description:
We are looking for highly qualified candidates from Physics both at the postdoctoral level. Post-docs must hold a Ph.D. degree in physics, preferably in Mathematical Physics, and are offered a position for 1 up to 3 years, dependent on qualification. A strong background in quantum information science is expected. Previous experience in the statistical physics of spin systems, entanglement entropy in spin systems, and the theory of cold gases are highly desirable. Morover, experinece with Quantum Cellular Autumata can be very useful for the project.
The successful candidate will work on one (or more) of the following general topics linked to the GEDENTQOPT project:
* "Few particle systems": Entanglement detection in systems with a possibility of local access to the particles
* Optimal decomposition of operators for local measurement
* Permutationally invariant quantum tomography
* Entanglement detection in experiments with photons
* Entanglement theory of multipartite quantum systems
* "Many-particle systems": Entanglement detection in systems with a possibility of measuring collective operators
* Optimal spin squeezing inequalities for entanglement detection
* Generating entangled states with cold atoms interacting with light
* Using many-body singlet states, obtained in the system above, for quantum information processing
* Optimal decomposition of operators for local measurement
* Permutationally invariant quantum tomography
* Entanglement detection in experiments with photons
* Entanglement theory of multipartite quantum systems
* "Many-particle systems": Entanglement detection in systems with a possibility of measuring collective operators
* Optimal spin squeezing inequalities for entanglement detection
* Generating entangled states with cold atoms interacting with light
* Using many-body singlet states, obtained in the system above, for quantum information processing
Application:
Applications should include a a curriculum vitae, a list of publications, a summary of past accomplishments, and the full contact details of 2 referees (or letters of recommendation).
Please send applications to:
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