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Eigenstate thermalization and ensemble equivalence in few-body fermionic systems
Philippe Jacquod
We investigate eigenstate thermalization from the point of view of vanishing particle and heat currents between a few-body fermionic Hamiltonian prepared in one of its eigenstates…
Optimal placement of inertia and primary control : a matrix perturbation theory approach
Laurent Pagnier, Philippe Jacquod
The increasing penetration of inertialess new renewable energy sources reduces the overall mechanical inertia available in power grids and accordingly raises a number of issues of…
Rate of change of frequency under line contingencies in high voltage electric power networks with uncertainties
Robin Delabays, Melvyn Tyloo, Philippe Jacquod
In modern electric power networks with fast evolving operational conditions, assessing the impact of contingencies is becoming more and more crucial. Contingencies of interest can…
Global Robustness vs. Local Vulnerabilities in Complex Synchronous Networks
Melvyn Tyloo, Philippe Jacquod
In complex network-coupled dynamical systems, two questions of central importance are how to identify the most vulnerable components and how to devise a network making the overall…
Network desynchronization by non-Gaussian fluctuations
Jason Hindes, Philippe Jacquod, Ira B. Schwartz
Many networks must maintain synchrony despite the fact that they operate in noisy environments. Important examples are stochastic inertial oscillators, which are known to exhibit f…