English

Performing SU($d$) operations and rudimentary algorithms in a superconducting transmon qudit for $d=3$ and $d=4$

Quantum Physics 2023-06-01 v1

Abstract

Quantum computation architecture based on dd-level systems, or qudits, has attracted considerable attention recently due to their enlarged Hilbert space. Extensive theoretical and experimental studies have addressed aspects of algorithms and benchmarking techniques for qudit-based quantum computation and quantum information processing. Here, we report a physical realization of qudit with upto 4 embedded levels in a superconducting transmon, demonstrating high-fidelity initialization, manipulation, and simultaneous multi-level readout. In addition to constructing SU(dd) operations and benchmarking protocols for quantum state tomography, quantum process tomography, and randomized benchmarking etc, we experimentally carry out these operations for d=3d=3 and d=4d=4. Moreover, we perform prototypical quantum algorithms and observe outcomes consistent with expectations. Our work will hopefully stimulate further research interest in developing manipulation protocols and efficient applications for quantum processors with qudits.

Keywords

Cite

@article{arxiv.2304.11841,
  title  = {Performing SU($d$) operations and rudimentary algorithms in a superconducting transmon qudit for $d=3$ and $d=4$},
  author = {Pei Liu and Ruixia Wang and Jing-Ning Zhang and Yingshan Zhang and Xiaoxia Cai and Huikai Xu and Zhiyuan Li and Jiaxiu Han and Xuegang Li and Guangming Xue and Weiyang Liu and Li You and Yirong Jin and Haifeng Yu},
  journal= {arXiv preprint arXiv:2304.11841},
  year   = {2023}
}

Comments

Submitted to the Physical Review X; Received 19 October 2022; accepted 3 April 2023