X-ray polarimetry, sometimes alone, and sometimes coupled to spectral and temporal variability measurements and to imaging, allows a wealth of physical phenomena in astrophysics to be studied. X-ray polarimetry investigates the acceleration process, for example, including those typical of magnetic reconnection in solar flares, but also emission in the strong magnetic fields of neutron stars and white dwarfs. It detects scattering in asymmetric structures such as accretion disks and columns, and in the so-called molecular torus and ionization cones. In addition, it allows fundamental physics in regimes of gravity and of magnetic field intensity not accessible to experiments on the Earth to be probed. Finally, models that describe fundamental...
Astronomical polarimetry allows to study the physical properties of a great variety of sources, as p...
The Imaging X-ray Polarimetry Explorer (IXPE) will add polarization to the properties (time, energy,...
Since the birth of X-ray astronomy, spectral, spatial and timing observation improved dramatically, ...
"X-ray polarimetry, sometimes alone, and sometimes coupled to spectral and temporal variability meas...
X-ray polarimetry is a long-standing missing piece in the puzzle of multiwavelenght study of high en...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
While X-ray spectroscopy, timing, and imaging have improved much since 1962 when the first astronomi...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
X-ray polarization of astronomical sources is an almost unexplored field of high energy astrophysics...
The Imaging X-ray Polarimetry Explorer (IXPE) expands observation space by simultaneously adding pol...
AbstractThe Imaging X-ray Polarimetry Explorer (IXPE) expands observation space by simultaneously ad...
Astronomical polarimetry allows to study the physical properties of a great variety of sources, as p...
The Imaging X-ray Polarimetry Explorer (IXPE) will add polarization to the properties (time, energy,...
Since the birth of X-ray astronomy, spectral, spatial and timing observation improved dramatically, ...
"X-ray polarimetry, sometimes alone, and sometimes coupled to spectral and temporal variability meas...
X-ray polarimetry is a long-standing missing piece in the puzzle of multiwavelenght study of high en...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
While X-ray spectroscopy, timing, and imaging have improved much since 1962 when the first astronomi...
XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time...
X-ray polarization of astronomical sources is an almost unexplored field of high energy astrophysics...
The Imaging X-ray Polarimetry Explorer (IXPE) expands observation space by simultaneously adding pol...
AbstractThe Imaging X-ray Polarimetry Explorer (IXPE) expands observation space by simultaneously ad...
Astronomical polarimetry allows to study the physical properties of a great variety of sources, as p...
The Imaging X-ray Polarimetry Explorer (IXPE) will add polarization to the properties (time, energy,...
Since the birth of X-ray astronomy, spectral, spatial and timing observation improved dramatically, ...