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The effect of fringe fields from patterned magnetic domains on the electroluminescence of organic light-emitting diodes

机译:图案磁畴的边缘场对有机发光二极管电致发光的影响

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Large magnetic field effects, either in conduction or luminescence, have been observed in organic light-emitting diodes (OLEDs) for over a decade now. The physical processes are largely understood when exciton formation and recombination lead to the magnetic field effects. Recently, magnetic field effects in some co-evaporated blends have shown that exciplexes deliver even larger responses. In either case, the magnetic field effects arise from some spin-mixing mechanism and spin-selective processes in either the exciton formation or the exciplex recombination. Precise control of light output is not possible when the spin mixing is either due to hyperfine fields or differences in the Lande g-factor. We theoretically examine the optical output when a patterned magnetic film is deposited near the OLED. The fringe fields from the magnetic layers supply an additionally source of spin mixing that can be easily controlled. In the absence of other spin mixing mechanisms, the luminescence from exciplexes can be modified by 300%. When other spin-mixing mechanisms are present, fringe fields from remanent magnetic states act as a means to either boost or reduce light emission from those mechanisms. Lastly, we examine the influence of spin decoherence on the optical output.
机译:已经在几十年内观察到在有机发光二极管(OLED)中观察到导通或发光的大磁场效应。当Exciton形成和重组导致磁场效应时,物理过程在很大程度上理解。最近,一些共蒸发共混物中的磁场效应表明,基西复合率为较大的反应。在任何一种情况下,磁场效果都是由一些旋旋机构和激子形成或来自Exciplex重组中的旋旋选择方法产生。当旋转混合是由于覆盖域的血清域或地域G因子的差异时,不可能进行精确控制。理论上,当沉积在OLED附近时,理论上检查光学输出。来自磁性层的边缘领域提供了可以容易地控制的旋转混合源。在没有其他自旋混合机制的情况下,来自Exciplecs的发光可以通过300%来改变。当存在其他自旋混合机构时,来自剩余磁力状态的边缘场用作促进或减少来自这些机制的光发射的装置。最后,我们研究了旋转角度对光输出的影响。

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