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Instrumental artifacts: stray and scattered light in the Goddard High-Resolution Spectrograph aboard the Hubble Space Telescope

机译:仪器文物:哈勃太空望远镜上戈达德高分辨率光谱仪中的杂散光和散射光

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Abstract: The scientific goals of the Goddard High Resolution Spectrograph (GHRS) require data of very high integrity, with high S/N, spectral resolution, wavelength calibration and photometric accuracy. The instrument was designed to have optical, structural, thermal and detector performance capable of delivering nearly photon limited ultraviolet spectra. Many important characteristics such as geometrical formats, sensitivity functions, resolving power and linearity were predicted from design specifications, and were tested and verified. Instrumental properties which may limit the ultimate performance, such as stray light, distortions and geometrical instabilities were anticipated but not precisely modeled. A careful test program, comprising several distinct pre- and post-launch phases identified, characterized and in several cases eliminated potentially troublesome aspects. In the spirit of 'lessons learned' this paper describes a number of optical and detector related artifacts, how they were identified and measured, and either eliminated by reworking the hardware, or calibrated and compensated for during data reduction. Builders of future instruments should be aware of the types of anomalies we encountered so they may be avoided in the design phases, or well calibrated in the testing phase. We will discuss aspects of the testing programs, both technical and programmatic, which contributed to the successful commissioning of the GHRS and its current return of high quality spectroscopic data.!17
机译:摘要:戈达德高分辨率光谱仪(GHRS)的科学目标要求具有非常高的完整性,高信噪比,光谱分辨率,波长校准和光度精度的数据。该仪器的设计具有光学,结构,热学和检测器性能,能够提供近光子受限的紫外光谱。根据设计规范预测了许多重要特征,例如几何格式,灵敏度函数,分辨力和线性,并进行了测试和验证。可能会限制最终性能的仪器特性,例如杂散光,变形和几何不稳定性,已经被预料到了,但是并没有精确建模。一个仔细的测试程序,包括确定,特征化的几个不同的启动前和启动后阶段,并在某些情况下消除了潜在的麻烦方面。本着“经验教训”的精神,本文描述了许多与光学和检测器有关的伪像,它们是如何识别和测量的,或者通过重新加工硬件来消除,或者在数据缩减期间进行校准和补偿。未来仪器的制造商应了解我们遇到的异常类型,以便可以在设计阶段避免这些异常,或者在测试阶段对其进行良好的校准。我们将讨论测试程序的各个方面,包括技术性和程序性测试,这些方面有助于GHRS的成功调试及其当前返回的高质量光谱数据!17

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