An Instrument Suite for the Vertical Characterization of the Ionosphere-Thermosphere System from 100 km to 700km Altitude.

Computer Science – Sound

Scientific paper

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2427 Ionosphere/Atmosphere Interactions (0335), 2437 Ionospheric Dynamics, 3294 Instruments And Techniques, 3369 Thermospheric Dynamics (0358), 3394 Instruments And Techniques

Scientific paper

We describe an instrument suite that includes WTS (the Wind-Temperature Spectrometer developed for the ANDE mission of the Naval Research Laboratory), a new Ion-Drift-Temperature Spectrometer (IDTS) and one each of our new Neutral (NMS) and Ion (IMS) Mass Spectrometers. The WTS and IDTS both implement Small- Deflection Energy Analyzers (SDEAs) developed at NASA Goddard; thus, they are capable of measuring the differential energy and angular distributions of neutrals and ions with the capability of detecting and characterizing non-Maxwellian ion and neutral distributions in the upper atmosphere. The mass spectrometers have a mass resolution of approximately 1/60. The suite is designed for sounding rocket investigations to obtain the vertical distribution of the neutral wind, ion drift, respective temperatures, and relative densities of the major species, e.g., O/N2; in addition it will provide ion and neutral composition, to include metals. The sensitivity of each instrument is sufficient to provide data over altitudes ranging from about 100 to about 700 km. The vertical spatial resolution in the neutral wind/temperature gradually increases from a few meters between 100 and 150 km to 100's of meters above 400 km. The ion drift measurements will have spatial resolution less than 1 m at the peak of the F- region and larger above and below. The wind and ion-drift measurements require large vehicle velocity in the sampled region. We will discuss this and other performance requirements. The capability offered in this instrument suite will make it possible to add new data in our pursuit of two long standing questions: a) the transition from Maxwellian to non-Maxwellian as the thermosphere becomes the exosphere and b) the true O/O2 and O/N2 ratio without instrument contamination due to O recombination in the ion source.

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