Environment spectrum and coherence behaviours in a rare-earth doped crystal for quantum memory

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Abstract

We theoretically investigate the dynamics of environment and coherence behaviours of the central ion in a quantum memory based on a rare-earth doped crystal. The interactions between the central ion and the bath spins suppress the flip-flop rate of the neighbour bath spins and yield a specific environment spectral density S(ω). Under dynamical decoupling pulses, this spectrum provides a general scaling for the coherence envelope and coherence time, which significantly extend over a range on an hour-long time scale. The characterized environment spectrum with ultra-long coherence time can be used to implement various quantum communication and information processing protocols.

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Gong, B., Tu, T., Zhou, Z. Q., Zhu, X. Y., Li, C. F., & Guo, G. C. (2017). Environment spectrum and coherence behaviours in a rare-earth doped crystal for quantum memory. Scientific Reports, 7(1). https://doi.org/10.1038/s41598-017-18229-6

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