activity
20242026
collaborators

7 papers

quant-ph2026

Learning Lindblad Dynamics of a Superconducting Quantum Processor

Johann Bock Severin, Malthe A. Marciniak, Rune Thinggaard Birke +13

Accurate models of quantum processors are essential for understanding, calibrating, and improving their performance. In practice, model construction must balance physical detail ag…

quant-ph2026

Junction-Intrinsic Dissipation in Hybrid Superconductor-Semiconductor Gatemon Qubits

Zhenhai Sun, David Feldstein-Bofill, Ksenia Shagalov +10

Superconducting transmon qubits based on hybrid superconductor-semiconductor Josephson junctions (gatemons) offer gate tunability, but their relaxation times remain well below thos…

quant-ph2026

Demonstrating and Benchmarking Classical Shadows for Lindblad Tomography

Rune Thinggaard Birke, Johann Bock Severin, Malthe A. Marciniak +15

Spurious couplings and decoherence degrade the performance of solid-state quantum processors, demanding careful design, calibration, and mitigation protocols. These strategies ofte…

quant-ph2026

Millisecond-Scale Calibration and Benchmarking of Superconducting Qubits

Malthe A. Marciniak, Rune T. Birke, Johann B. Severin +13

Superconducting qubit parameters drift on sub-second timescales, motivating calibration and benchmarking techniques that can be executed on millisecond timescales. We demonstrate a…

quant-ph2025

Real-time adaptive tracking of fluctuating relaxation rates in superconducting qubits

Fabrizio Berritta, Jacob Benestad, Jan A. Krzywda +17

The fidelity of operations on a solid-state quantum processor is fundamentally bounded by environmental decoherence. Characterizing environmental fluctuations is challenging becaus…

cond-mat.mes-hall2025

Andreev spin relaxation time in a shadow-evaporated InAs weak link

Haoran Lu, David F. Bofill, Zhenhai Sun +4

Andreev spin qubits are a new qubit platform that merges superconductivity with semiconductor physics. The mechanisms dominating observed energy relaxation remain unidentified. We…