The exciton size. Where are the limits?

O. Dimitriev
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Abstract

The concept of exciton implies a collective excited state able to travel in a particle-like fashion. Its size is determined by the radius of excited electron-hole pair and, although it may vary by two orders of magnitude, it is always spatially restricted, while its delocalization length owing to the exciton wavefunction spatial dynamics may provide even a larger scale of changes. In this work, the limitations of exciton sizes are discussed by analysis where the exciton concept is still applicable. It is shown that the exciton size can be as small as few angstroms, but even smaller sizes can be, probably, justified. At the same time, coupling of exciton to polariton mode can enlarge the exciton-polariton coherence length to values as high as 20 µm, thus extending the scale of possible exciton sizes up to five orders of magnitude.
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激子的大小。极限在哪里?
激子的概念意味着一种能够以类似粒子的方式传播的集体激发态。它的大小由被激发的电子-空穴对的半径决定,虽然它可能变化两个数量级,但它总是受到空间限制,而由于激子波函数空间动力学,它的离域长度可能提供更大范围的变化。在这项工作中,通过分析讨论了激子尺寸的局限性,其中激子概念仍然适用。这表明激子的尺寸可以小到几埃,但更小的尺寸可能是合理的。同时,激子与极化子模式的耦合可以将激子-极化子相干长度扩大到高达20µm的值,从而将可能的激子尺寸扩展到5个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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