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Enhanced tunable second harmonic generation from twistable interfaces and vertical superlattices in boron nitride homostructures

机译:从硼氮化硼型型旋转界面和垂直超晶格中增强可调谐的第二次谐波产生

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Broken symmetries induce strong even-order nonlinear optical responses in materials and at interfaces. Unlike conventional covalently bonded nonlinear crystals, van der Waals (vdW) heterostructures feature layers that can be stacked at arbitrary angles, giving complete control over the presence or lack of inversion symmetry at a crystal interface. Here, we report highly tunable second harmonic generation (SHG) from nanomechanically rotatable stacks of bulk hexagonal boron nitride (BN) crystals and introduce the term twistoptics to describe studies of optical properties in twistable vdW systems. By suppressing residual bulk effects, we observe SHG intensity modulated by a factor of more than 50, and polarization patterns determined by moiré interface symmetry. Last, we demonstrate greatly enhanced conversion efficiency in vdW vertical superlattice structures with multiple symmetry-broken interfaces. Our study paves the way for compact twistoptics architectures aimed at efficient tunable frequency conversion and demonstrates SHG as a robust probe of buried vdW interfaces.
机译:破碎的对称性诱导材料和接口处的强烈均衡的非线性光学响应。与常规共价键合非线性晶体不同,Van der WaaS(Vdw)异质结构层,其可以以任意角度堆叠,完全控制在晶体界面处的存在或缺失反转对称。这里,我们从纳米机上可旋转堆叠的块状六边形氮化物(BN)晶体堆叠报告高度可调谐的第二次谐波产生(SHG),并引入术语捻度,以描述可扭曲VDW系统中的光学性质的研究。通过抑制残余散装效果,我们观察由Moiré接口对称确定的超过50个超过50的SHG强度。最后,我们在具有多个对称性破损接口的VDW垂直超晶格结构中展示了大大提高的转换效率。我们的研究为紧凑的扭曲光学架构铺平了旨在有效的可调频率转换的架构,并演示SHG作为埋地VDW接口的强大探头。

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