English

Proposal for stable atom trapping on a GaN-on-Sapphire chip

Optics 2022-09-21 v1

Abstract

The hybrid photon-atom integrated circuits, which include photonic microcavities and trapped single neutral atom in their evanescent field, are of great potential for quantum information processing. In this platform, the atoms provide the single-photon nonlinearity and long-lived memory, which are complementary to the excellent passive photonics devices in conventional quantum photonic circuits. In this work, we propose a stable platform for realizing the hybrid photon-atom circuits based on an unsuspended photonic chip. By introducing high-order modes in the microring, a feasible evanescent-field trap potential well 0.3mK\sim0.3\,\mathrm{mK} could be obtained by only 10mW10\,\mathrm{mW}-level power in the cavity, compared with 100mW100\,\mathrm{mW}-level power required in the scheme based on fundamental modes. Based on our scheme, stable single atom trapping with relatively low laser power is feasible for future studies on high-fidelity quantum gates, single-photon sources, as well as many-body quantum physics based on a controllable atom array in a microcavity.

Keywords

Cite

@article{arxiv.2205.12153,
  title  = {Proposal for stable atom trapping on a GaN-on-Sapphire chip},
  author = {Aiping Liu and Lei Xu and Xin-Biao Xu and Guang-Jie Chen and Pengfei Zhang and Guo-Yong Xiang and Guang-Can Guo and Qin Wang and Chang-Ling Zou},
  journal= {arXiv preprint arXiv:2205.12153},
  year   = {2022}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-24T11:27:14.168Z