首页> 外国专利> Polycrystalline diamond substrate with thin film coating made of non-hydrogenated amorphous diamond-like carbon as a permanent optical element.

Polycrystalline diamond substrate with thin film coating made of non-hydrogenated amorphous diamond-like carbon as a permanent optical element.

机译:具有由非氢化非晶态类金刚石碳制成的薄膜涂层的多晶金刚石基板,作为永久性光学元件。

摘要

Optical elements, and methods for fabricating them, are described wherein each element includes a free standing (self supporting) polycrystalline continuous thin film of diamond (101) combined with a non-hydrogenated amorphous diamond like carbon (DLC) film having a high percentage of sp3 bonding (104). These elements may be designed to have optically smooth surfaces, have wide optical transmission ranges (for example, be transparent across the infrared portion of the spectrum), and exhibit exceptional durability characteristics. Optical instruments that include such elements are also described, along with the derivative benefits, such as improved operating performance and lower maintenance requirements, realized using the novel optical elements. In particular, a polarization Michaelson interferometer (PMI) is taught which is operative over the entire range from far infrared into the visible portion of the spectrum without requiring the exchange of beam splitters or beam polarizers. These performance benefits are achieved as a result of the transmission characteristics of the novel optical elements associated with the PMI. IMAGE
机译:描述了光学元件及其制造方法,其中每个元件均包括金刚石(101)的自立(自支撑)多晶连续薄膜以及与非氢化无定形类金刚石碳(DLC)薄膜相结合的高百分比的光学薄膜。 sp 3键合(104)。这些元件可以被设计成具有光学上光滑的表面,具有宽的光学透射范围(例如,在光谱的红外部分上是透明的),并表现出优异的耐久性。还描述了包括这种元件的光学仪器,以及使用新颖的光学元件实现的派生利益,例如改进的操作性能和较低的维护要求。特别地,教导了一种偏振迈克尔逊干涉仪(PMI),其可在从远红外到光谱的可见部分的整个范围内操作,而无需更换分束器或光束偏振器。由于与PMI相关的新型光学元件的传输特性而获得了这些性能优势。 <图像>

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