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A quantum chaos study on the localization of light in a resonator-based photonic crystal

机译:基于谐振器的光子晶体中光的局域性的量子混沌研究

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We explore the issue of eigenstate localization in a two-dimensional photonic resonator lattice. In the system of our purpose, by harmonically modulating coupling constants between the resonators an effective magnetic field is imposed on the motion of a photon. From the study on the spectral fluctuantions and participation ration of eigenstates we proceed our aim. We find that the localization properties of the studied system do not change significantly in the region of small phases. In this regime a strong delocalized character is revealed. Conversely, for larger phases a great tendency to localization is seen.
机译:我们探索二维光子谐振器晶格中的本征态局部化问题。在我们目的的系统中,通过谐波调制谐振器之间的耦合常数,有效的磁场被施加到光子的运动上。通过对本征态的光谱波动和参与率的研究,我们可以达到我们的目标。我们发现,所研究系统的定位特性在小相位区域内没有显着变化。在这种情况下,显示出强烈的离域特征。相反,对于较大的相位,可以看到很大的局部化趋势。

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