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Quantum Simulation
Experimental realization of phase-controlled dynamics with hybrid digital-analog approach
arXiv
Authors: Ziyu Tao, Libo Zhang, Xiaole Li, Jingjing Niu, Kai Luo, Kangyuan Yi, Yuxuan Zhou, Hao Jia, Song Liu, Tongxing Yan, Yuanzhen Chen, Dapeng Yu
Year
2020
Paper ID
21913
Status
Preprint
Abstract Read
~2 min
Abstract Words
149
Citations
N/A
Abstract
Quantum simulation can be implemented in pure digital or analog ways, each with their pros and cons. By taking advantage of the universality of a digital route and the efficiency of analog simulation, hybrid digital-analog approaches can enrich the possibilities for quantum simulation. We use a unique hybrid approach to experimentally perform a quantum simulation of phase-controlled dynamics resulting from a closed-contour interaction (CCI) within certain multi-level systems in superconducting quantum circuits. Due to symmetry constraints, such systems cannot host an inherent CCI. Nevertheless, by assembling analog modules corresponding to their natural evolutions and specially designed digital modules constructed from standard quantum logic gates, we can bypass such constraints and realize an effective CCI in these systems. Based on this realization, we demonstrate a variety of related and interesting phenomena, including phase-controlled chiral dynamics, separation of chiral enantiomers, and a new mechanism to generate entangled states based on CCI.
Why This Paper Matters
- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
- It adds a 2020 reference point for readers tracking recent quantum research.
- Quantum simulation can be implemented in pure digital or analog ways, each with their pros and cons.
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