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Extending the room temperature spin coherence time of boron vacancies in hexagonal boron nitride

ORAL

Abstract

Optically active spins in hexagonal boron nitride (hBN) attract increased attention recently due to room temperature operation and the possible co-integration of the spin defect sensors into ultra-thin semiconductor heterostructures. The VB- spin (S=1) can be addressed by means of optically detected magnetic resonance (ODMR). However, the optical readout contrast of the VB- spin state is relatively low and decays quickly, rendering the use for quantum sensing applications limited until more efficient microwave control and optimized defect creation with long spin phase coherence times are developed. Here, we demonstrate coherent control of the VB- spin defects and utilize a pulsed dynamical decoupling protocol CPMG to extend the T2 coherence time by up to two orders of magnitude. With the increased spin coherence time we address new applications such as the detection of AC magnetic fields and sequences for ambient quantum imaging.

Publication: [1] Enhancing the room temperature spin coherence time of boron vacancies for dynamical quantum sensing (in preparation)<br>[2] https://arxiv.org/abs/2210.00150<br>[3] https://arxiv.org/abs/2202.10980

Presenters

  • Andreas V Stier

    Technische Universität München, Walter Schottky Institut, Technical University of Munich

Authors

  • Martin Schalk

    Technical University of Munich

  • Andreas V Stier

    Technische Universität München, Walter Schottky Institut, Technical University of Munich

  • Roberto Rizzato

    Technical University of Munich

  • Chenjiang Qian

    Technical University of Munich

  • Stephan Mohr

    Technical University of Munich

  • Joachim P Leibold

    Technical University of Munich, Technische Universität München, Garching, Germany

  • Georgy V Astakhov

    Helmholtz-Zentrum Dresden-Rossendorf, Helmholtz-Zentrum Dresden Rossendorf

  • Ulrich Kentsch

    Helmholtz-Zentrum Dresden-Rossendorf

  • Manfred Helm

    Helmholtz-Zentrum Dresden-Rossendorf

  • Dominik Bucher

    Technical University of Munich, Technische Universität München, Garching, Germany

  • Jonathan J Finley

    Technische Universität München, Walter Schottky Institut, Technical University of Munich