Yu Sunkyu, Piao Xianji, Hong Jiho, Park Namkyoo
Photonic Systems Laboratory, Department of Electrical and Computer Engineering, Seoul National University, Seoul 08826, Korea.
Nat Commun. 2015 Sep 16;6:8269. doi: 10.1038/ncomms9269.
Bloch's theorem was a major milestone that established the principle of bandgaps in crystals. Although it was once believed that bandgaps could form only under conditions of periodicity and long-range correlations for Bloch's theorem, this restriction was disproven by the discoveries of amorphous media and quasicrystals. While network and liquid models have been suggested for the interpretation of Bloch-like waves in disordered media, these approaches based on searching for random networks with bandgaps have failed in the deterministic creation of bandgaps. Here we reveal a deterministic pathway to bandgaps in random-walk potentials by applying the notion of supersymmetry to the wave equation. Inspired by isospectrality, we follow a methodology in contrast to previous methods: we transform order into disorder while preserving bandgaps. Our approach enables the formation of bandgaps in extremely disordered potentials analogous to Brownian motion, and also allows the tuning of correlations while maintaining identical bandgaps, thereby creating a family of potentials with 'Bloch-like eigenstates'.
布洛赫定理是确立晶体带隙原理的一个重要里程碑。尽管曾经人们认为,根据布洛赫定理,带隙只能在周期性和长程相关性的条件下形成,但非晶态介质和准晶体的发现推翻了这一限制。虽然有人提出用网络和液体模型来解释无序介质中的类布洛赫波,但这些基于寻找具有带隙的随机网络的方法在确定性地创建带隙方面都失败了。在此,我们通过将超对称概念应用于波动方程,揭示了在随机游走势中形成带隙的一条确定性途径。受等谱性的启发,我们采用了一种与以往方法不同的方法:我们在保持带隙的同时将有序转化为无序。我们的方法能够在类似于布朗运动的极度无序势中形成带隙,还能在保持相同带隙的同时调整相关性,从而创建出一族具有“类布洛赫本征态”的势。