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, Bloomington, Indiana, U.S.A. The project aims to experimentally design and optimize macroscopic entangled states of light based on femtosecond laser-driven bright squeezed vacuum states, multimode pulsed
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; Numerical Analysis; Optimization; Quantitative Methods for Finance; and Topology and Dynamics. Information about the School is available at: http://www.birmingham.ac.uk/schools/mathematics/index.aspx
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involved in the operation of the world’s most sensitive interferometers, and/or the R&D program for future detector improvements. Examples include optimizing the squeezing of the vacuum to minimize quantum
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on reliability, security, and resilience of microgrid systems. This includes advanced control system design, modeling and analysis, control architecture design and communication-based control and optimization
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, statistics, and financial mathematics. Website: https://sites.google.com/view/trr388/ Project B03 of SFB/TRR388 concerns numerical methods for the treatment of stochastic optimal control problems and backward