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Multi-channel router and logic NAND gate from multiple Autler–Townes splitting controlled by phase transition

机译:多通道路由器和逻辑NAND门从阶段转换控制的多个自动夹

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摘要

For the first time, we investigated the electric-dipole transition dependent primary and secondary temporal Autler–Townes (TAT)-splitting of a hybrid signal (fluorescence and Stokes) in Pr ~(3+) :YPO _(4) . We compared the TAT-splitting in different phases (pure tetragonal (T), pure hexahedral (H), (T + H)-phase, and (H + T)-phase) of the Pr ~(3+) :YPO _(4) crystal. The TAT-splitting in the (H + T)-phase was observed to be stronger than that in other phases, while the Pr ~(3+) ion had stronger dressing than the Eu ~(3+) ion in the host material of YPO. Furthermore, we observed that the ratio of primary and secondary TAT-splitting can be controlled by the single and double dressing effect using the power and detuning of employed laser fields. In our experiment, we observed that secondary splitting from secondary dressed levels can only be observed at the resonance wavelength in the three-level system. Based on the results, we proposed a model for a multi-channel optical router and logic NAND gate. The routing action results from primary and secondary TAT-splitting, while the NAND gate was realized by the primary dressed states.
机译:我们首次调查了PR〜(3+):YPO _(4)中的偶极信号(荧光和尖顶)的电偶极转换依赖于初级和次要颞型自动柱(TAT)。我们将TAT分裂与PR〜(3+)的纯四方(T),纯六面体(H),(T + H) - 双相)进行比较(纯四方(T),纯六半面(H),(T + H) - 相):YPO _ (4)水晶。观察到(H + T)静脉中的TAT分裂比在其他相中更强,而PR〜(3+)离子在主体材料中具有比EU〜(3+)离子更强的敷料ypo。此外,我们观察到,初级和次级TAT分裂的比例可以通过使用所采用的激光场的功率和静脉来控制单个和双敷料效果。在我们的实验中,我们观察到,只能在三级系统中的谐振波长处观察来自次级衣服水平的二次分裂。基于结果,我们提出了多通道光路由器和逻辑NAND门的模型。从初级和次级TAT分裂产生路由动作,而NAND门由主要衣服状态实现。

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