Scatter from X-ray reflecting surfaces.
Scatter from X ray reflecting surfaces, performing measurement on fused silica, Cer- Vit, beryllium, Kanigen, steel and silicon
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Scatter from X ray reflecting surfaces, performing measurement on fused silica, Cer- Vit, beryllium, Kanigen, steel and silicon
X ray collimating structure for focusing radiation directly onto detector
Grazing incident double reflection X-ray telescope
Reflection efficiency of soft X-rays by optical flats of Pyrex glass and stainless steel
Spectral reflectance power comparison for concave gratings in soft X-ray region
High speed monochromator for studying small angle X-ray scattering
Bragg reflecting crystals for spectroscopy and polarimetry in X ray astronomy
Design of totally reflecting orbiting X-ray telescope
Calculation of spectral line intensity produced by concave grating with given monochromatic radiant power source
Integrated Bragg X ray scattering intensities for monatomic crystalline lattices, considering thermal diffuse component contribution
Luminescence studies, chemical analyses, X-ray diffraction examinations, and reflectance measurements to investigate optical properties and photoreactions of zinc oxide
Aplanatic total reflection telescope for celestial X-ray source study from rockets and satellites
Very high energy X-rays-and by that I means X-rays with energies in excess of 100 kilovolts or so-are observed from the sun only during very large solar flares, and even then only for a very few minutes. Unlike the lower energy X-ray measurements you heard about a little bit earlier, which are essentially measures of the thermal nature of the emitting region, the very high energy X-rays are a direct reflection of the high energy electrons in the source region.
Large area modular glancing-reflection X ray gathering system for focusing photons in 0.1 to 20,000 ev range, noting improved SNR
IXPE has provided for the first time detailed energy- and time-resolved X-ray polarimetry of Z-type neutron star low-mass X-ray binaries (NS-LMXBs) as they move along their color-color diagrams (CCDs). These sources can reach the highest polarization observed for NS-LXMBs in the 2–8 keV range when they move along the horizontal branch. In a previous paper, we characterized the spectral state of a sample of Z-sources using the CCD and estimated the polarization with model-independent analysis. Here, we present detailed spectropolarimetric analysis for each source on each branch using data from IXPE, NICER, and NuSTAR. The continuum X-ray emission of all the sources is well described with a combination of thermal accretion disk emission plus a harder Comptonized component. In addition, reflection features, in particular the relativistically broadened Fe Kα line, are observed for our sources, except GX 5–1. For most of the sources and branches, the main contribution to the X-ray emission and polarization is due to Comptonization: moving from the horizontal branch (HB) to the normal branch (NB), the polarization degree (PD) in the 2–8 keV band varies from about 6% to 3–4%, while the PD is loosely constrained in the flaring branch (FB), due to the shorter exposures. These PD values are significantly higher than theoretical expectations for typical spreading or boundary layer configurations. The polarization of the disk is generally lower (below 3%) but still higher than predictions for an electron scattering-dominated, plane-parallel atmosphere above the disk observed at the corresponding inclination. Moreover, the polarization angle (PA) of the disk seems to be significantly misaligned and not perpendicular to that of Comptonization. We find no correlation between the polarization signal and the inclination, nor with the contribution of reflected photons throughout the Z-track.
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X-ray polarimetry is a new tool capable of probing the geometry of accretion onto weakly magnetized neutron stars. Here we present the first X-ray spectro-polarimetric results from coordinated observations of the atoll source 4U 1735−44, conducted with the Imaging X-ray Polarimetry Explorer (IXPE), NICER, and NuSTAR . Over the 2–8 keV energy range, we obtained a marginal detection of polarization with the polarization degree of 1.4% ± 0.7% and polarization angle of −29◦ ± 14◦, corresponding to a 3σ upper limit on the polarization degree of 3.5%. The best-fit model to describe the spectrum comprises a thermal component associated with the accretion disk, a Comptonized black body component, and a relativistic reflection component. From the reflection model, we infer a disk inclination of ∼40◦. The spectroscopic and polarimetric properties of 4U 1735−44 are consistent with those observed in other atoll sources studied by IXPE, with its low polarization likely due to its low inclination
Imaging slitless spectrometer, a combination of an X ray transmission /or reflection/ grating and image-forming X ray telescope, is capable of obtaining simultaneous spatial and spectral information about celestial X ray sources.