论文标题
用超短中红外脉冲解压缩HBN
Unzipping hBN with ultrashort mid-infrared pulses
论文作者
论文摘要
操纵材料的纳米结构对于电子,磁化和光子学中的众多应用至关重要。但是,诸如光刻和激光编写之类的传统方法需要清洁室设施或留下残留物。在这里,我们描述了一种新的方法,该方法是在室温下通过中红外(MID-IR)中的直接光语音子激发在室温下在六角硼(HBN)中创建原子尖锐的线缺陷。我们称这种现象为“解动”,以描述从激光驱动区域内的一个点<30 nm宽的裂纹的快速形成和生长。这些特征的形成归因于较大的原子位移和在自然共振下驱动晶体的高局部粘结应变。该过程的区别是(i)仅在共振声子激发下发生,(ii)产生高度亚波长的特征,以及(iii)对晶体方向和泵激光极化的敏感性。它的清洁度,方向性和清晰度可通过自由空间光激发在原位薄片切割和声子耦合中应用。
Manipulating the nanostructure of materials is critical for numerous applications in electronics, magnetics, and photonics. However, conventional methods such as lithography and laser-writing require cleanroom facilities or leave residue. Here, we describe a new approach to create atomically sharp line defects in hexagonal boron nitride (hBN) at room temperature by direct optical phonon excitation in the mid-infrared (mid-IR). We term this phenomenon "unzipping" to describe the rapid formation and growth of a <30-nm-wide crack from a point within the laser-driven region. The formation of these features is attributed to large atomic displacements and high local bond strain from driving the crystal at a natural resonance. This process is distinguished by (i) occurring only under resonant phonon excitation, (ii) producing highly sub-wavelength features, and (iii) sensitivity to crystal orientation and pump laser polarization. Its cleanliness, directionality, and sharpness enable applications in in-situ flake cleaving and phonon-wave-coupling via free space optical excitation.