Javascript must be enabled to continue!
Chandra X-ray Observatory high-resolution x-ray spectroscopy of stars: Modeling and interpretation
View through CrossRef
The Chandra X-ray Observatory grating spectrometers allow study of stellar spectra at resolutions on the order of 1000. Prior x-ray observatories’ low resolution data have shown that nearly all classes of stars emit x rays. Chandra reveals details of line and continuum contributions to the spectra which can be interpreted through application of plasma models based on atomic databases. For cool stars with hot coronas interpreted in the solar paradigm, assumption of collisional ionization equilibrium allows derivation of temperature distributions and elemental abundances. Densities can be derived from He-like ion’s metastable transition lines. Abundance trends are unlike the Sun, as are the very hot temperature distributions. For young stars, there is evidence of accretion driven x-ray emission, rather than magnetically confined plasma emission. For some hot stars, the expected emission mechanism of shocked winds has been challenged; there is now evidence for magnetically confined thermal plasmas. The helium-like line emission in hot stars is susceptible to photoexcitation, which can also be exploited to derive wind structure.
Title: Chandra X-ray Observatory high-resolution x-ray spectroscopy of stars: Modeling and interpretation
Description:
The Chandra X-ray Observatory grating spectrometers allow study of stellar spectra at resolutions on the order of 1000.
Prior x-ray observatories’ low resolution data have shown that nearly all classes of stars emit x rays.
Chandra reveals details of line and continuum contributions to the spectra which can be interpreted through application of plasma models based on atomic databases.
For cool stars with hot coronas interpreted in the solar paradigm, assumption of collisional ionization equilibrium allows derivation of temperature distributions and elemental abundances.
Densities can be derived from He-like ion’s metastable transition lines.
Abundance trends are unlike the Sun, as are the very hot temperature distributions.
For young stars, there is evidence of accretion driven x-ray emission, rather than magnetically confined plasma emission.
For some hot stars, the expected emission mechanism of shocked winds has been challenged; there is now evidence for magnetically confined thermal plasmas.
The helium-like line emission in hot stars is susceptible to photoexcitation, which can also be exploited to derive wind structure.
Related Results
Astronomical research in Kharkiv at the end of the 19th century – the first half of the 20th century
Astronomical research in Kharkiv at the end of the 19th century – the first half of the 20th century
The main milestones of the formation and development of astronomical science in Kharkiv during 1883–1945 are reconstructed on the example of the activities of the astronomical obse...
ASTROMETRIC RESEARCH IN UKRAINE AT THE XIX – BEGINNING OF XX CENTURIES
ASTROMETRIC RESEARCH IN UKRAINE AT THE XIX – BEGINNING OF XX CENTURIES
The paper presents the stages of development of astrometric research at the Ukrainian observatories in the ХIХ – beginning of ХХ century. They are related to the establishment of u...
Chandra X-ray analysis of Herbig Ae/Be stars
Chandra X-ray analysis of Herbig Ae/Be stars
ABSTRACT
Herbig Ae/Be (HAeBe) stars are intermediate-mass pre-main-sequence stars, characterized by infrared (IR) excess and emission lines. They are observed to emi...
Chandra X‐ray Observatory
Chandra X‐ray Observatory
Abstract
The Chandra X‐ray Observatory (originally called the Advanced X‐ray Astrophysics Facility—AXAF) is the X‐ray component of NASA's “Great Observatory” Program. Cha...
Fieldwork teaching on Mars using a Large-Scale Visualisation System
Fieldwork teaching on Mars using a Large-Scale Visualisation System
Recent orbital and rover images of the surface of Mars provide exceptional high-resolution views of the martian landscapes and its surface geology. These extensive datasets provide...
Een passie voor precisie: Frederik Kaiser en het instrumentarium van de Leidse Sterrewacht
Een passie voor precisie: Frederik Kaiser en het instrumentarium van de Leidse Sterrewacht
Passion for precision. Frederik Kaiser and the instrumentation of Leiden ObservatoryFrederik Kaiser (1808-1872) was one of the most inspiring directors of the Leiden astronomical o...
Wolf–Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
Wolf–Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
Context. The majority of the Wolf–Rayet (WR) stars represent the stripped cores of evolved massive stars who lost most of their hydrogen envelope. Wind stripping in single stars is...
YOGA CHANDRA TRADISI WATUKARU
YOGA CHANDRA TRADISI WATUKARU
For a Sanatani, to understand the symbolic manifestation of Lord Śiva and his attributes, which is crowned with a crescent moon called Ardha Chandra. This crescent moon has the mea...

