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Anderson localizations and photonic band-tail states observed in compositionally disordered platform

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The strength of photon localization in the band-tail states is determined by the degree of disorder and state energy. Anderson localization in random structures is an intriguing physical phenomenon, for… Click to show full abstract

The strength of photon localization in the band-tail states is determined by the degree of disorder and state energy. Anderson localization in random structures is an intriguing physical phenomenon, for which experimental verifications are far behind theoretical predictions. We report the first experimental confirmations of photonic band-tail states and a complete transition of Anderson localization. An optically activated photonic crystal alloy platform enables the acquisition of extensive experimental data exclusively on pure eigenstates, revealing direct evidence of band-tail states and Anderson localization transition within the band-tail states. Analyses of both experimental and simulated data lead to a comprehensive picture of photon localization that is highly consistent with theories by Anderson and others. We believe that our results provide a strong experimental foundation upon which both the fundamental understandings and application possibility of Anderson localization can be promoted significantly.

Keywords: localization; anderson; tail states; band tail

Journal Title: Science Advances
Year Published: 2018

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