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Mechanism of the coherent control of the photoionization and photodissociation of HI and DI

机译:HI和DI的光电离和光解离相干控制的机理

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摘要

Two experiments were performed to determine the mechanism responsible for the phase lag between the HI~+ and I~+ signals observed by Zhu et al. (Science, 270 (1995) 77) in the one- versus three-photon coherent control of the decay of excited HI and DI. In the first experiment a pulse of 266 nm radiation was introduced before the UV and VUV control pulses. It was observed in this case that the modulation amplitudes of the I~+ signal decreased slightly, whereas the modulation depths decreased by a factor of two. This experiment rules out the possibility that modulation of I~+ is caused by coherent control of the ionization of I atoms generated by two-photon photodissociation of the parent molecule. In the second experiment a fluorescence excitation spectrum produced by a single VUV photon was recorded and is attributed to emission from the atomic iodine product. Both experiments support our original interpretation of the phase lag arising from coherent control of the branching ratio for autoionization versus predissociation of the excited parent molecule.
机译:进行了两个实验以确定由Zhu等人观察到的HI〜+和I〜+信号之间的相位滞后的机理。 (Science,270(1995)77)在单光子与三光子相干控制中激发HI和DI的衰减。在第一个实验中,在UV和VUV控制脉冲之前引入了266 nm辐射脉冲。在这种情况下,观察到I〜+信号的调制幅度略有降低,而调制深度则降低了两倍。该实验排除了由母体分子的双光子光解离产生的I原子电离的相干控制而引起I〜+调节的可能性。在第二个实验中,记录了由单个VUV光子产生的荧光激发光谱,并归因于原子碘产物的发射。这两个实验都支持我们对相位滞后的原始解释,该相位滞后是由相干控制激发的母体分子的自电离与预离解的支化比引起的。

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