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Programme
Timetable
| Monday 26 | Tuesday 27 | Wednesday 28 | Thursday 29 | Friday 30 | |
| 9:30-10:30 | Opening Farhi, E. |
Jozsa, R. | Ruskai, M. B. | Mabuchi. H | Popescu, S. |
| 10:30-11:00 | Coffee | Coffee | Coffee | Coffee | Coffee |
| 11:00-12:00 | Plenio, M. | Slingerland, J. | Kurizki, G. | Briegel, H.-J. | Lewenstein, M. |
| 12:00-13:00 | Horodechi, M. | Khaneja, N. | Winter, A. | Lidar, D. | Cirac, I. |
| 13:00-16:00 | Break | Break | Break | Break | Closing |
| 16:00-17:00 | Scarani, V. | Wilhem, F. | Short Comm. | Manko, V. | |
| 17:00-17:30 | Coffee | Coffee | Coffee | Coffee | |
| 17:30-19:45 | Short Comm. | Short Comm. | Short Comm. | Short Comm. |
Titles
| Briegel, H.-J. | Recent developments in measurement-based quantum computations |
| Cirac, I. | Quantum simulations using classical and quantum computers |
| Farhi, E. | A quantum computer can determine who wins a game faster that a classical computer |
| Horodecki, M. | Mathematical aspects of quantum entanglement |
| Jozsa, R. | Classical simulation of quantum circuits |
| Khaneja, N. | Optimal control in quantum spin systems |
| Kurizki, G. | Universal dynamical control of decoherence and thermodynamics in time and space |
| Lewenstein, M. | Ultracold atoms as quantum simulators |
| Lidar, D. | Robust quantum decoherence control |
| Mabuchi, H. | Signals and feedback in quantum control and quantum information |
| Manko, V. | Tomographic probability representation and entangled quantum states |
| Plenio, M. | Entanglement measures and applications |
| Popescu, S. | Quantum non-locality: theory and applications |
| Ruskai, M. B. | Recent Developments and Open Problems in Quantum Shannon Theory |
| Scarani, V. | Quantum cryptography and non-locality |
| Slingerland, J. | Topological Quantum Computation |
| Wilhem, F. | Control theory and quantum noise |
| Winter, A. | Quantum information can be negative |