Radio spectrum of an active solar region determined from the 20 July 1963 eclipse.
Radio spectrum of active region near east limb of Sun determined from July 20, 1963 eclipse
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Radio spectrum of active region near east limb of Sun determined from July 20, 1963 eclipse
IR emission measurement of lunar-like materials during simulated eclipse, noting dependence on time
Radiometric observations of total lunar eclipse of December 19, 1964 at wavelength of 3.3 mm indicate no significant temperature difference
Solar corona temperature from intensity gradients measured during total eclipse of May 30, 1965
Corona temperature and logarithmic intensity gradients determined by pointwise three-color photoelectric photometry during solar eclipse
We present an overview of four deep phase-constrained Chandra HETGS X-ray observations of Delta Ori A. Delta Ori A is actually a triple system that includes the nearest massive eclipsing spectroscopic binary, Delta Ori Aa, the only such object that can be observed with little phase-smearing with the Chandra gratings. Since the fainter star, Delta Ori Aa2, has a much lower X-ray luminosity than the brighter primary (Delta Ori Aa1), Delta Ori Aa provides a unique system with which to test the spatial distribution of the X-ray emitting gas around Delta Ori Aa1 via occultation by the photosphere of, and wind cavity around, the X-ray dark secondary. Here we discuss the X-ray spectrum and X-ray line profiles for the combined observation, having an exposure time of nearly 500 ks and covering nearly the entire binary orbit. The companion papers discuss the X-ray variability seen in the Chandra spectra, present new space-based photometry and ground-based radial velocities obtained simultaneously with the X-ray data to better constrain the system parameters, and model the effects of X-rays on the optical and UV spectra. We find that the X-ray emission is dominated by embedded wind shock emission from star Aa1, with little contribution from the tertiary star Ab or the shocked gas produced by the collision of the wind of Aa1 against the surface of Aa2. We find a similar temperature distribution to previous X-ray spectrum analyses. We also show that the line half-widths are about 0.3−0.5 times the terminal velocity of the wind of star Aa1. We find a strong anti-correlation between line widths and the line excitation energy, which suggests that longer-wavelength, lower-temperature lines form farther out in the wind. Our analysis also indicates that the ratio of the intensities of the strong and weak lines of Fe XVII and Ne X are inconsistent with model predictions, which may be an effect of resonance scattering.
Global Ionospheric Specification (GIS) is based on the Gauss–Markov Kalman filter to assimilate the slant total electron content (TEC) observed from ground-based GPS receivers and space-based radio occultation instrumentations in order to reconstruct three-dimensional (3D) ionospheric electron density structure, and it can remotely sense and monitor the weather condition in space. In this study, five minutes of high temporal resolution GIS is implemented in order to reconstruct the 3D electron density structure on the 21 August 2017 total solar eclipse and analyze the variations induced by the moon’s shadow. To obtain more information of the ionosphere, from the extend 2200 GPS stations on the continental United States, are added for assimilation. The results show the ionosphere peak height (hmF2) uplift was 30–50 km altitude in latitude 25–40°N, and that the electron density depletion at higher altitudes (400 km) has a more noticeable time delay than at low altitudes (200 km), especially in low-latitude regions.
Measurements of lunar temperature variations during eclipse and normal lunation and isothermal maps of selected craters
Magnetostrictively scanned interferometer for airborne recording of coronal temperatures during solar eclipse
Absolute optical flux observations of total moon eclipse on 18 October 1967
Photographic search for small bright comets during solar eclipse
Star photography during solar eclipse by fixed focus aerial cameras aboard jet aircraft
Incoherent backscatter observations of F region during solar eclipse
Brightness distribution of local source over sunspot group during solar eclipse
IR emission measurement of lunar-like materials during simulated eclipse, noting dependence on time
Chromospheric spectrum at 1962 eclipse, discussing slitless spectrograms of flash spectrum, equipment, procedures and data
Lunar surface thermal characteristics during eclipse from Surveyors 3, 5 and after sunset from Surveyor 5
Response of ionospheric and exospheric electron contents to partial solar eclipse, using OGO 1 satellite