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Stimulated nutation echo: application to the driven decoherence study

机译:受刺激的章动回声:在驱动去相干研究中的应用

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We study experimentally the dynamical and decay properties of the stimulated nutation echo (SNE) in a two-level spin system, the signal of which allows the observation timescale of the driven coherence relaxation to be extended. This signal appears in the transient response of the system to the second pulse at time tau(1) from its start and coinciding with the duration of the first pulse. The information about the first pulse duration is imprinted into the population difference of the inhomogeneously broadened ensemble of the two-level absorbers. The decay of the SNE signal has two contributions. One originates from the population decay during the time tau between the two pulses. Another is caused by the coherence loss during the excitation by the first pulse and the reading time of the second pulse. Experimental results on the decay properties induced by these mechanisms are presented for the first time. We investigate the dependence of these decay rates on the pulse intensity and we examine its relationship with the anomalous (non-Bloch) decay of other coherent transients in solids. [References: 42]
机译:我们实验研究了两级自旋系统中受激励的章动回声(SNE)的动力学和衰减特性,该信号的信号允许扩展驱动相干弛豫的观测时间尺度。该信号出现在系统对第二个脉冲的瞬态响应中,从第二个脉冲开始,时间为tau(1),与第一个脉冲的持续时间一致。关于第一脉冲持续时间的信息被印在两级吸收器的不均匀加宽整体的总体差异中。 SNE信号的衰减有两个作用。一个源于两个脉冲之间的时间tau期间的种群衰减。另一个是由第一脉冲激发期间的相干损耗和第二脉冲的读取时间引起的。首次提出了由这些机制引起的衰减特性的实验结果。我们研究了这些衰减率对脉冲强度的依赖性,并研究了其与固体中其他相干瞬态的异常(非布洛赫)衰减的关系。 [参考:42]

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