旋转
连贯性(哲学赌博策略)
相干时间
自旋态
激光线宽
光抽运
自旋(空气动力学)
物理
基态
人口
自旋跃迁
自旋工程
极化(电化学)
自旋极化
光电子学
原子物理学
凝聚态物理
化学
光学
量子力学
激光器
电子
人口学
物理化学
社会学
热力学
作者
Senthil Kumar Kuppusamy,Diana Serrano,Aline Nonat,Benoı̂t Heinrich,Lydia Karmazin,Loı̈c J. Charbonnière,Philippe Goldner,Mario Ruben
标识
DOI:10.1038/s41467-021-22383-x
摘要
Abstract The success of the emerging field of solid-state optical quantum information processing (QIP) critically depends on the access to resonant optical materials. Rare-earth ion (REI)-based molecular systems, whose quantum properties could be tuned taking advantage of molecular engineering strategies, are one of the systems actively pursued for the implementation of QIP schemes. Herein, we demonstrate the efficient polarization of ground-state nuclear spins—a fundamental requirement for all-optical spin initialization and addressing—in a binuclear Eu(III) complex, featuring inhomogeneously broadened 5 D 0 → 7 F 0 optical transition. At 1.4 K, long-lived spectral holes have been burnt in the transition: homogeneous linewidth (Γ h ) = 22 ± 1 MHz, which translates as optical coherence lifetime (T 2opt ) = 14.5 ± 0.7 ns, and ground-state spin population lifetime (T 1spin ) = 1.6 ± 0.4 s have been obtained. The results presented in this study could be a progressive step towards the realization of molecule-based coherent light-spin QIP interfaces.
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