2–4 Sept 2026
James Clerk Maxwell Building
Europe/London timezone

Contribution List

17 out of 17 displayed
  1. 02/09/2026, 09:30
  2. 02/09/2026, 10:30
  3. 02/09/2026, 11:30
  4. 02/09/2026, 12:30
  5. 02/09/2026, 14:30

    In order to model realistic quantum devices it is necessary to simulate quantum systems strongly coupled to their environment. To date, most understanding of open quantum systems is restricted either to weak system-bath couplings, or to special cases where specific numerical techniques become effective.

    I will present a general and yet exact numerical method to calculate the dynamics of...

    Go to contribution page
  6. 02/09/2026, 15:30
  7. 03/09/2026, 09:30

    In this talk, I will present a framework to study sensitivity to a given class of perturbations in multiqubit systems with and without control. I will start by introducing the notion of universal robustness for general quantum systems and its connection to unitary designs and robust quantum control. I will then focus on multiqubit systems and the study of sensitivity to classes of...

    Go to contribution page
  8. 03/09/2026, 10:30
  9. 03/09/2026, 11:30

    Standard descriptions of open quantum systems rely heavily on weak-coupling, Markovian, and slow-driving approximations. In quantum optics, the quantum regression theorem relates single-time Liouvillian evolution to multi-time correlation functions, governing key observables such as emission spectra and photon statistics. In quantum thermodynamics, weak-coupling master equations similarly...

    Go to contribution page
  10. 03/09/2026, 12:30
  11. 03/09/2026, 14:30

    A key challenge for quantum technologies is identifying applications where quantum algorithms can ultimately deliver transformative advantages. At Aegiq, we are pursuing a quantum-ready strategy: developing computational workflows that create value today using tensor network methods while maintaining a clear pathway towards future quantum implementations. In this talk, I will present our...

    Go to contribution page
  12. 03/09/2026, 15:30
  13. 04/09/2026, 09:30
  14. 04/09/2026, 10:30
  15. 04/09/2026, 11:30

    Achieving high-fidelity control in the presence of strong non-Markovian noise is critical for the optimization of emergent solid-state quantum devices. We present a highly efficient optimization framework that combines automatic differentiation with the non-Markovian uniTEMPO algorithm, enabling direct gradient-based optimization of complex objective functions. We apply this method to...

    Go to contribution page
  16. 04/09/2026, 12:00
  17. 04/09/2026, 12:30