论文标题
在对称性界面上的非线性扭曲
Nonlinear twistoptics at symmetry-broken interfaces
论文作者
论文摘要
断裂的对称性在材料和界面中诱导强烈的非线性光学响应。扭曲角可以完全控制晶体界面处的存在或缺乏反转对称性,因此是调整非线性光学系统的吸引人的旋钮。与常规的非线性晶体具有刚性晶格的相反,范德华(VDW)异质结构中的弱层间耦合允许任意选择扭曲角度,从而使纳米力学对单个设备中基本界面对称性的操纵成为可能。在这里,我们报告了高度可调的第二次谐波生成(SHG),从纳米机械上可旋转的大块六角硼硼化硼(BN)晶体中,并引入了TwistOptics一词,以描述动态扭曲VDW系统中光学性质的研究。我们观察到通过Moiré界面对称性确定的50倍以上的极化模式的SHG强度,以及通过堆叠由对称性破裂界面连接的多个BN来确定的散装晶体的转化效率。我们的研究为旨在有效,可伸缩和可调频率转换的紧凑型扭曲体系结构提供了基础,并将SHG作为埋藏的VDW接口的强大探测。
Broken symmetries induce strong nonlinear optical responses in materials and at interfaces. Twist angle can give complete control over the presence or lack of inversion symmetry at a crystal interface, and is thus an appealing knob for tuning nonlinear optical systems. In contrast to conventional nonlinear crystals with rigid lattices, the weak interlayer coupling in van der Waals (vdW) heterostructures allows for arbitrary selection of twist angle, making nanomechanical manipulation of fundamental interfacial symmetry possible within a single device. 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 dynamically twistable vdW systems. We observe SHG intensity modulated by a factor of more than 50, polarization patterns determined by moiré interface symmetry, and enhanced conversion efficiency for bulk crystals by stacking multiple pieces of BN joined by symmetry-broken interfaces. Our study provides a foundation for compact twistoptics architectures aimed at efficient, scalable, and tunable frequency-conversion, and demonstrates SHG as a robust probe of buried vdW interfaces.