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Updated: May 3, 2026

Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform
Published on: August 2, 2019
Demonstration of geometric Landau-Zener interferometry in a superconducting qubit
Xinsheng Tan1, Dan-Wei Zhang2, Zhentao Zhang3
1National Laboratory of Solid State Microstructures, School of Physics, Nanjing University, Nanjing 210093, China and Department of Physics and Astronomy, University of Kansas, Lawrence, Kansas 66045, USA.
Abstract:
Geometric quantum manipulation and Landau-Zener interferometry have been separately explored in many quantum systems. In this Letter, we combine these two approaches to study the dynamics of a superconducting phase qubit. We experimentally demonstrate Landau-Zener interferometry based on the pure geometric phases in this solid-state qubit. We observe the interference caused by a pure geometric phase accumulated in the evolution between two consecutive Landau-Zener transitions, while the dynamical phase is canceled out by a spin-echo pulse. The full controllability of the qubit state as a function of the intrinsically robust geometric phase provides a promising approach for quantum state manipulation.
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