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Optical tests of nanoengineered liquid mirrors

机译:纳米工程液体镜的光学测试

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We describe a new technology for the fabrication of inexpensive high-quality mirrors. We begin by chemically producing a large number of metallic nanoparticles coated with organic ligands. The particles are then spread on a liquid substrate where they self-assemble to give optical quality reflective surfaces. Since liquid surfaces can be modified by a variety of means (e.g., rotation, electromagnetic fields), this opens the possibility of making a new class of versatile and inexpensive optical elements that can have complex shapes and that can be modified within short time scales. Interferometric measurements show optical quality surfaces. We have obtained reflectivity curves that show 80% peak reflectivities. We are confident that we can improve the reflectivity curves because theoretical models predict higher values. We expect nanoengineered liquid mirrors to be useful for scientific and engineering applications. The technology is interesting for large optics, such as large rotating parabolic mirrors, because of its low cost. Furthermore, because the surfaces of ferrofluids can be shaped with magnetic fields, one can generate complex, time-varying surfaces that are difficult to make with conventional techniques.
机译:我们描述了一种用于制造廉价高品质镜面的新技术。我们首先以化学方法生产大量涂有有机配体的金属纳米颗粒。然后将粒子散布在液体基板上,在此处它们会自组装以提供光学质量的反射表面。由于可以通过多种手段(例如旋转,电磁场)来对液体表面进行修饰,因此开辟了制造新型的通用且廉价的光学元件的可能性,该光学元件可以具有复杂的形状并且可以在短时间内进行修饰。干涉测量显示光学质量表面。我们已经获得了显示80%峰值反射率的反射率曲线。我们有信心可以改善反射率曲线,因为理论模型可以预测更高的值。我们希望纳米工程液体镜将对科学和工程应用有用。由于其低成本,该技术对于诸如大型旋转抛物面反射镜之类的大型光学器件很有趣。此外,由于铁磁流体的表面可以用磁场整形,因此可以产生复杂的,随时间变化的表面,这是常规技术难以制造的。

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    《Applied optics》 |2003年第10期|共6页
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