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Absolute index of refraction and its temperature dependence of calcium fluoride, barium fluoride, and strontium fluoride near 157 nm

机译:157 nm附近的氟化钙,氟化钡和氟化锶的绝对折射率及其温度依赖性

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We have made accurate measurements near 157 nm of the absolute index of refraction, the index dispersion, and the temperature dependence of the index, for the cubic-symmetry, group-II fluorides: calcium fluoride, strontium fluoride, and barium fluoride. Accurate measurements of these quantities for calcium fluoride are needed for designs of lens systems for 157 nm excimer-laser-based exposure tools for photolithography. Measurements of these quantities for other isotropic materials highly transmissive near 157 nm, such as strontium fluoride and barium fluoride, are needed for designs which include secondary materials in addition to calcium fluoride to correct for chromatic aberrations. These optical properties were measured with precision goniometers on prisms of the materials in a nitrogen atmosphere using the minimum deviation method. The relative refractive indices were converted to absolute indices by using values of the index of nitrogen obtained by independent interferometric measurements near 157 nm. Values of the absolute refractive indices for these materials were obtained with an accuracy of 6 x 10~(-6). A key result is that the dispersion of barium fluoride near 157 nm is ~68% larger (more negative) than that of calcium fluoride, which makes barium fluoride a potentially useful material for combination with calcium fluoride for chromatic aberration correction near 157 nm.
机译:对于立方对称的第II组氟化物:氟化钙,氟化锶和氟化钡,我们已经在157 nm附近精确测量了绝对折射率,折射率色散和折射率的温度依赖性。对于用于157 nm准分子激光的光刻工具的镜头系统设计,需要准确测量这些氟化钙的量。对于包括氟化锶和氟化钡等在157 nm附近具有高透射率的其他各向同性材料,需要对这些量进行测量,以进行除氟化钙之外还包括次要材料的设计,以校正色差。使用最小偏差法,在氮气气氛中,用精密测角计在材料的棱镜上测量这些光学性能。通过使用独立的干涉测量在157 nm附近获得的氮的折射率值,将相对折射率转换为绝对折射率。这些材料的绝对折射率值以6 x 10〜(-6)的精度获得。关键结果是,氟化钡在157 nm附近的色散比氟化钙大约68%(更负),这使得氟化钡成为与氟化钙结合用于157 nm附近色差校正的潜在有用材料。

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