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Quantum Emission from Coupled Spin Pairs in Hexagonal Boron Nitride

ORAL

Abstract

Optically addressable defect qubits in wide band gap materials are favorable candidates for room temperature quantum information processing. The two-dimensional (2D) hexagonal boron nitride (hBN) is an attractive solid state platform with a great potential for hosting bright quantum emitters with quantum memories with leveraging the potential of 2D materials for realizing scalable preparation of defect qubits. Although, room temperature bright defect qubits have been recently reported in hBN but their microscopic origin, the nature of the optical transition as well as the optically detected magnetic resonance (ODMR) have been remained elusive. Here we connect the variance in the optical spectra, optical lifetimes and spectral stability of quantum emitters to donor-acceptor pairs (DAP) in hBN by means of ab initio calculations. We find that DAPs can exhibit ODMR signal for the acceptor counterpart of the defect pair with S=1/2 ground state at non-zero magnetic fields depending on the donor partner. The donor-acceptor pair model and its transition mechanisms provide a recipe towards defect qubit identification and performance optimization in hBN for quantum applications.

This work was supported by the Cultural and Innovation Ministry of Hungary and the National Research, Development, and Innovation Office of Hungary (NKFIH) within Quantum Information National Laboratory (Grant No. 2022-2.1.1-NL-2022-00004) as well as the Horizon Europe EIC Pathfinder QuMicro project (grant no. 101046911).

Publication: arXiv:2408.13515

Presenters

  • Adam Gali

    Wigner Research Centre for Physics, HUN-REN Wigner Research Centre for Physics

Authors

  • Adam Gali

    Wigner Research Centre for Physics, HUN-REN Wigner Research Centre for Physics

  • Song Li

    Beijing Computational Science Research Center

  • Anton Pershin

    Wigner Research Center for Physics