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首页> 外文期刊>The Journal of Chemical Physics >Singlet-triplet conversion induced by external magnetic field in gaseous oxalylfluoride excited to different single rotational levels of the A~1A_u state. I. Excitation to the SRLs of the 8~1 vibronic level
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Singlet-triplet conversion induced by external magnetic field in gaseous oxalylfluoride excited to different single rotational levels of the A~1A_u state. I. Excitation to the SRLs of the 8~1 vibronic level

机译:由外部磁场在气态草酰氟中激发到A〜1A_u状态的不同单个旋转能级引起的单重态-三重态转换。一,对8〜1振动级别的SRL的激励

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摘要

Fluorescence decay of the rotationally cooled oxalylfluoride excited to the different single rotational levels of the A~1 A_u(8~1) state was measured as a function of an external magnetic field. On excitation to this level, the dynamics in both zero and nonzero fields may be described using the intermediate-molecule limit, with the fluorescence exhibiting biexponential decay. The fast component decay rate constant is the field-independent parameter, while that of the slow component depends on the magnetic field strength. The results obtained were explained by the indirect (electronic and nuclear-spin-decoupling) mechanism, proposed earlier.
机译:测量了被旋转冷却至A〜1 A_u(8〜1)状态的不同单个旋转水平的旋转冷却的草酰氟的荧光衰减,该衰减是外部磁场的函数。在激发到该水平时,可以使用中间分子极限来描述零和非零场中的动力学,其中荧光表现出双指数衰减。快速分量衰减率常数是与磁场无关的参数,而慢速分量衰减率常数取决于磁场强度。先前提出的间接(电子和核自旋解耦)机制解释了获得的结果。

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