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Focal Ratio Degradation and Transmission in VIRUS-P Optical Fibers

机译:VIRUS-P光纤的焦比衰减和传输

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We have conducted extensive tests of both transmission and focal ratio degradation (FRD) on two integral field units currently in use on the VIRUS-P integral field spectrograph. VIRUS-P is a prototype for the VIRUS instrument proposed for the Hobby-Eberly Telescope at McDonald Observatory. All tests have been conducted at an input f-ratio of F/3.65 and with an 18% central obscuration in order to simulate optical conditions on the HET. Transmission measurements were conducted with narrow-band interference filters (FWHM: 10 nm) at 10 discrete wavelengths (337 to 600 nm), while FRD tests were made at 365 nm, 400 nm and 600 nm. The influence of wavelength, end immersion, fiber type and length on both FRD and transmission is explored. Most notably, we find no wavelength dependence on FRD down to 365 nm. All fibers tested are within the VIRUS instrument specifications for both FRD and transmission. We present the details of our differential FRD testing method and explain a simple and robust technique of aligning the test bench and optical fiber axes to within ±0.1 degrees.
机译:我们对VIRUS-P积分场光谱仪上当前使用的两个积分场单元进行了透射率和焦比降低(FRD)的广泛测试。 VIRUS-P是为麦当劳天文台的Hobby-Eberly望远镜提出的VIRUS仪器的原型。为了模拟HET上的光学条件,所有测试均在F / 3.65的输入f比下进行,且中心遮盖度为18%。使用窄带干涉滤光片(FWHM:10 nm)在10个离散波长(337至600 nm)下进行透射测量,而FRD测试则在365 nm,400 nm和600 nm进行。探索了波长,浸入端,光纤类型和长度对FRD和传输率的影响。最值得注意的是,我们发现低至365 nm的波长对FRD均无依赖性。所有测试的光纤均在FRUS和传输的VIRUS仪器规格之内。我们将介绍差分FRD测试方法的详细信息,并说明一种将测试台和光纤轴对准±0.1度以内的简单而强大的技术。

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