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Absolute calibration and characterization of the multiband imaging photometer for Spitzer. IV. The spectral energy distribution mode

机译:Spitzer多波段成像光度计的绝对校准和表征。 IV。光谱能量分布模式

摘要

The spectral energy distribution (SED) mode of the Multiband Imaging Photometer for Spitzer (MIPS) aboard the Spitzer Space Telescope provides low-spectral resolution (R ≈ 15–25) spectroscopy in the far-infrared using the MIPS 70 μm detector. A reflective grating provides a dispersion of 1.7 μm per pixel, and an effective wavelength coverage of 52.8–98.7 μm over detector rows 1–27. The final 5 detector rows are contaminated by second-order diffracted light and are left uncalibrated. The flux calibration is based on observations of MIPS calibration stars with 70 μm flux densities of 0.5–15 Jy. The point-source flux calibration accuracy is estimated to be 10% or better down to about 0.5 Jy at the blue end of the spectrum and to ~2 Jy near the red end. With additional uncertainties from the illumination and aperture corrections included, the surface brightness calibration of extended sources is accurate to ~15%. Repeatability of better than 5% is found for the SED mode through multiple measurements of several calibration stars.
机译:Spitzer空间望远镜上的Spitzer多波段成像光度计(MIPS)的光谱能量分布(SED)模式使用MIPS 70μm探测器在远红外范围内提供低光谱分辨率(R≈15–25)光谱。反射光栅在每个像素上的色散为1.7μm,在探测器行1–27上的有效波长范围为52.8–98.7μm。最后的5个检测器行被二阶衍射光污染,并且未经校准。通量校准基于MIPS校准星的观测,通量密度为70μm,为0.5–15 Jy。点源通量校准精度估计在光谱的蓝色端约为0.5 Jy,在红色端约为〜2 Jy,约为10%或更高。加上来自照明和孔径校正的其他不确定因素,扩展光源的表面亮度校准精确到〜15%。通过对几颗校准星进行多次测量,发现SED模式的重复性优于5%。

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