In February 2011 we proposed a NASA Explorer Mission of Opportunity program to develop and operate a large-aperture ultraviolet coronagraph spectrometer called the Coronal Physics Investigator (CPI) as an attached International Space Station (ISS) payload. The primary goal of this program is to identify and characterize the physical processes that heat and accelerate the primary and secondary components of the fast and slow solar wind. In addition, CPI can make key measurements needed to understand CMEs. UVCS/SOHO allowed us to identify what additional measurements need to be made to answer the fundamental questions about how solar wind streams are produced, and CPI's next-generation capabilities were designed specifically to make those measurements. Compared to previous instruments, CPI provides unprecedented sensitivity, a wavelength range extending from 25.7 to 126 nm, higher temporal resolution, and the capability to measure line profiles of He II, N V, Ne VII, Ne VIII, Si VIII, S IX, Ar VIII, Ca IX, and Fe X, never before seen in coronal holes above 1.3 solar radii. CPI will constrain the properties and effects of coronal MHD waves by (1) observing many ions over a large range of charge and mass, (2) providing simultaneous measurements of proton and electron temperatures to probe turbulent dissipation mechanisms, and (3) measuring amplitudes of low-frequency compressive fluctuations. CPI is an internally occulted ultraviolet coronagraph that provides the required high sensitivity without the need for a deployable boom, and with all technically mature hardware including an ICCD detector. A highly experienced Explorer and ISS contractor, L-3 Com Integrated Optical Systems and Com Systems East, will provide the tracking and pointing system as well as the instrument, and the integration to the ISS.
翻译:2011年2月,我们提出了美国航天局 " 机会探索飞行任务 " 方案,以开发和运行一个大型远光紫外线日冕光谱仪,称为 " 科隆物理调查员 " (CPI),作为附属国际空间站有效载荷,其主要目标是查明和定性快速和慢速太阳风的供热和加速初级和二级组成部分的物理过程;此外,CPI可以进行关键测量,以了解CMEs。 紫外线化学科学委员会/SOHO使我们得以确定需要做哪些额外测量,以回答如何产生太阳风流的基本问题,而CPI的下一代能力是专门设计用来进行这些测量的。与以前的仪器相比,CPI提供了前所未有的敏感性,波长范围从25.7至126海里,高时分辨率,以及测量He II、N V、 Ne VII、 N VIII、 Si VIII、 S IX、 S 和 Fe X 的线谱剖面图图,这在1.3 以上的日冕洞中从未看到过。 CPI将限制CI 和CHR 的内流和内流轨道轨道轨道轨道轨道轨道轨道轨道轨道轨道的深度和内测测测测测测测轨道系统。