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频率调谐光子莫尔晶格中光的局域化到非局域化转变

Localization-to-delocalization transition of light in frequency-tuned photonic moiré lattices.

作者信息

Zeng Jiongchao, Hu Yanwen, Zhang Xin, Fu Shenhe, Yin Hao, Li Zhen, Chen Zhenqiang

出版信息

Opt Express. 2021 Aug 2;29(16):25388-25398. doi: 10.1364/OE.434281.

Abstract

We demonstrate in a numerical manner the intriguing localization-to-delocalization transition of light in frequency-tuned photonic moiré lattices, both in the zero-order and the higher-order regimes of light waves. We present a different technique to realize the composite photonic lattices, by means of two relatively twisted sublattices with different modulated lattice constants. Even though various kinds of photonic patterns including the commensurable and the incommensurable lattices can be well constructed, the observed transition between the localization and the delocalization of light field is moiré angle-independent. This angle-insensitive property was not reported before, and cannot be achieved by those photonic moiré lattices that are all moiré angle-dependent. We reveal that the obtained phase transition of light is robust to the changes of refractive index modulation of the photonic lattices. Moreover, we reveal that the effect of moiré angle-independent transition of light can be extended to the higher-order vortex light field, hence allowing prediction, for the first time to our knowledge, of both the localization and the delocalization of the vortex light field in the photonic lattices.

摘要

我们以数值方式展示了光波零阶和高阶模式下,频率调谐光子莫尔晶格中光从局域到非局域的有趣转变。我们提出了一种不同的技术来实现复合光子晶格,即通过两个具有不同调制晶格常数的相对扭曲子晶格。尽管可以很好地构建各种光子图案,包括可公度和不可公度晶格,但观察到的光场局域化和非局域化之间的转变与莫尔角无关。这种角度不敏感特性以前未曾报道过,并且那些所有依赖莫尔角的光子莫尔晶格无法实现这一点。我们揭示,所获得的光的相变对于光子晶格折射率调制的变化具有鲁棒性。此外,我们揭示,光的与莫尔角无关的转变效应可以扩展到高阶涡旋光场,因此据我们所知首次实现了对光子晶格中涡旋光场局域化和非局域化的预测。

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