Sep 20 – 25, 2026
University of Graz
Europe/Vienna timezone

Surface Code hardware hamiltonian

Sep 21, 2026, 4:00 PM
30m
HS 15.13 (University of Graz)

HS 15.13

University of Graz

15 - RESOWI E, 1st floor
4) Invited talk M10 - Mesoscopic superconductivity and quantum circuits Mini-Colloquium

Speaker

Mohammad Ansari (Forschungszentrum Jülich)

Description

In this talk I'll present an overview over the modelling quantum circuits trajectory from pairwise interactions era to modern circuit QED analysis that enables simulating many-body interactions in surface-code quantum processor units (QPUs). Combining a concise diagrammatic formalism with high-precision numerical methods, our approach efficiently evaluates high-order, long-range Pauli string couplings and maps complete chip layouts onto exact effective Hamiltonians. Applying this method to surface-code architectures, such as Google’s Sycamore lattice, we identify three distinct operational regimes: computationally stable, error-dominated, and hierarchy-inverted. Our analysis reveals that even modest increases in residual qubit–qubit crosstalk can invert the interaction hierarchy, driving the system from a computationally favorable phase into a topologically ordered regime. This framework thus serves as a powerful guide for optimizing next-generation high-fidelity surface-code hardware and provides a pathway to investigate emergent quantum many-body phenomena.

Authors

Prof. John Martinis (University of California Santa Barbara) Dr Xuexin Xu (Forschungszentrum Jülich) Chloé Vignes (Massachusetts Institute of Technology) Dr Kuljeet Kaur (Forschungszentrum Jülich) Mohammad Ansari (Forschungszentrum Jülich)

Presentation materials

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