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首页> 外文期刊>Journal of Luminescence >Electromagnetically induced intrinsic bistability at the atomic level
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Electromagnetically induced intrinsic bistability at the atomic level

机译:电磁感应的原子本征双稳态

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摘要

Theory predicts that intrinsic bistability can be observed with two interacting systems, provided that some general conditions on correlation time of the interaction and induced line shifts are fulfilled. Two compounds with strongly interacting systems have been investigated in order to reach these conditions: Yb~(3+) :YCa_4O(BO_3)_3 (rare earth-rare earth ion interaction) and Nd~(3+) :GdFe_3(BO_3)_3 (rare earth-transition metal ion interaction). Although Yb~(3+) cooperative luminescence bistability has been observed in the first case, the effect of Yb~(3+)-Yb~(3+) interactions on the observed processes could not be demonstrated. In the second case, a transmission switch is observed as a function of the laser power, but without a defined hysteresis. This is attributed to small excited populations for both Nd~(3+) and Fe~(3+) ions.
机译:理论预测,只要满足相互作用的相关时间和诱导的线位移的一些一般条件,就可以用两个相互作用的系统观察到固有的双稳态。为了达到这些条件,研究了两种具有强相互作用系统的化合物:Yb〜(3+):YCa_4O(BO_3)_3(稀土-稀土离子相互作用)和Nd〜(3+):GdFe_3(BO_3)_3 (稀土-过渡金属离子的相互作用)。尽管在第一种情况下已观察到Yb〜(3+)协同发光双稳态,但无法证明Yb〜(3 +)-Yb〜(3+)相互作用对观察到的过程的影响。在第二种情况下,观察到传输开关是激光功率的函数,但没有确定的滞后。这归因于Nd〜(3+)和Fe〜(3+)离子的激发态较小。

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