论文标题
用于量子信息处理的基于分子的相干旋转界面 - 双核Europium复合物中的光学自旋状态极化
Molecule-based coherent light-spin interfaces for quantum information processing -- optical spin state polarization in a binuclear Europium complex
论文作者
论文摘要
固态光学量子信息处理(QIP)的新兴领域的成功取决于对共振光学材料的访问。稀土离子(REIS)是QIP方案的合适候选者,因为它们的非凡光物理和磁量子特性(例如长光学和旋转相干寿命)($ t_2 $)。然而,尽管尚未研究QIP应用的有利特性,例如原子上精确的量子可调性,固有的可伸缩性和较大的可移植性,但纳入了REI的分子。作为REI分子对光学QIP应用的有用性的第一个证词,我们在这项研究中证明,在不均匀宽扩大的$^5 $ d $ _0 \ to^7 $ f $ _0 $的狭窄光谱孔中可以燃烧MHz的翻译为$ T_2 = 14.5 $ $ \ pm $ 0.7 ns,1.4K。此外,观察到长寿命的光谱孔,表明欧盟(III)基核旋转的有效极化,这是全光旋转初始化和寻址的基本要求。这些结果阐明了基于REI的分子复合物作为在量子通信和处理中应用的多功能相干旋转界面。
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 ions (REIs) are suitable candidates for QIP protocols due to their extraordinary photo-physical and magnetic quantum properties such as long optical and spin coherence lifetimes ($T_2$). However, molecules incorporating REIs, despite having advantageous properties such as atomically exact quantum tunability, inherent scalability, and large portability, have not yet been studied for QIP applications. As a first testimony of the usefulness of REI molecules for optical QIP applications, we demonstrate in this study that narrow spectral holes can be burned in the inhomogeneously broadened $^5$D$_0\to^7$F$_0$ optical transition of a binuclear Eu(III) complex, rendering a homogeneous linewidth ($Γ_h$) = 22 $\pm$ 1 MHz, which translates as $T_2 = 14.5$ $\pm$ 0.7 ns at 1.4 K. Moreover, long-lived spectral holes are observed, demonstrating efficient polarization of Eu(III) ground state nuclear spins, a fundamental requirement for all-optical spin initialization and addressing. These results elucidate the usefulness of REI-based molecular complexes as versatile coherent light-spin interfaces for applications in quantum communications and processing.