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首页> 外文期刊>Nature Communications >Two-photon polarization-selective etching of emergent nano-structures on diamond surfaces
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Two-photon polarization-selective etching of emergent nano-structures on diamond surfaces

机译:金刚石表面上出现的纳米结构的双光子偏振选择性蚀刻

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Optical techniques have advanced considerably in recent years to enable processing of surfaces with a resolution less than the wavelength of light. Despite the highly selective nature of light-matter interactions, however, efforts to increase resolution to the scale of single atoms are hampered by rapid and efficient dissipation of the absorbed energy to the surrounding matrix. Here we show that two-photon surface excitation using ultraviolet light provides a method for selectively removing carbon from diamond surfaces. Polished surfaces etched by this method develop ultra-deep subwavelength structures with morphologies dependent on the polarization of the incident laser with respect to the crystal axes. As well as revealing a practical and versatile method for nano-patterning of diamond surfaces, we show that the results comprise mesoscopic evidence for bond scission via a highly localized optical interaction that may lead to the development of new optical approaches for ultra-nanoscale (<10?nm) surface structuring.
机译:近年来,光学技术已经取得了相当大的进步,以能够以小于光波长的分辨率处理表面。尽管光-物质相互作用具有高度选择性,但由于将吸收的能量快速有效地耗散到周围的基质中,阻碍了将分辨率提高到单个原子的规模的努力。在这里,我们表明使用紫外线的双光子表面激发提供了一种从钻石表面选择性去除碳的方法。通过这种方法蚀刻的抛光表面会形成超深亚波长结构,其形态取决于入射激光相对于晶轴的偏振。除了揭示一种实用且通用的钻石表面纳米图案化方法外,我们还表明,结果包括通过高度局部化的光学相互作用进行键断裂的介观证据,这可能会导致开发新的超纳米级光学方法(< 10?nm)表面结构化。

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