Jupiter, Saturn, and Earth-the three planets having dense atmosphere and a well developed magnetosphere-are known to emit X-rays. Recently, Chandra X-ray Observatory has observed X-rays from these planets, and XMM-Newton has observed them from Jupiter and Saturn. These observations have provided improved morphological, temporal, and spectral characteristics of X-rays from these planets. Both auroral and non-auroral (low-latitude) 'disk' X-ray emissions have been observed on Earth and Jupiter. X-rays have been detected from Saturn's disk, but no convincing evidence for X-ray aurora on Saturn has been observed. The non-auroral disk X-ray emissions from Jupiter, Saturn, and Earth, are mostly produced due to scattering of solar X-rays...
Electrons accelerated on Earth by a rich variety of wave-scattering or stochastic processes generate...
Today the field of planetary X-rays is very dynamic and in the forefront of new research. Apart from...
Jupiter's polar X-ray aurora is dominated by a bright dynamic hot spot that is produced by precipita...
Jupiter, Saturn, and Earth-the three planets having dense atmosphere and a well developed magnetosp...
Saturn was observed by Chandra ACIS-S on 2004 January 20 and 26-27 for one full Saturn rotation (10....
A wide variety of solar system bodies are now known to radiate in the soft x-ray energy (10 keV) x-r...
Soft X‐ray emission has been observed from the low‐latitude "disk" of both Jupiter and Saturn as wel...
We present a detailed analysis of Jupiter's X-ray (0.2.10 keV) auroral emissions as observed over tw...
Soft X-ray emission has been observed from the disk of both Jupiter and Saturn as well as from the a...
During the last few years our knowledge about the X-ray emission from bodies within the solar system...
X-ray emissions from Jupiter, discovered by Eisnsten observatory and followed up by ROSAT, have bee...
Jupiter’s disk is bright in X-rays as H2 molecules in the atmosphere are very effective at scatterin...
We present the results of a spectral study of the soft X-ray emission (0.2-2.5 keV) from low-latitud...
[1] Soft X-ray emission has been observed from the low-latitude ‘‘disk’ ’ of both Jupiter and Saturn...
During November 26-29, 2003 XMM-Newton observed soft (0.2-2 keV) X-ray emission from Jupiter for 69...
Electrons accelerated on Earth by a rich variety of wave-scattering or stochastic processes generate...
Today the field of planetary X-rays is very dynamic and in the forefront of new research. Apart from...
Jupiter's polar X-ray aurora is dominated by a bright dynamic hot spot that is produced by precipita...
Jupiter, Saturn, and Earth-the three planets having dense atmosphere and a well developed magnetosp...
Saturn was observed by Chandra ACIS-S on 2004 January 20 and 26-27 for one full Saturn rotation (10....
A wide variety of solar system bodies are now known to radiate in the soft x-ray energy (10 keV) x-r...
Soft X‐ray emission has been observed from the low‐latitude "disk" of both Jupiter and Saturn as wel...
We present a detailed analysis of Jupiter's X-ray (0.2.10 keV) auroral emissions as observed over tw...
Soft X-ray emission has been observed from the disk of both Jupiter and Saturn as well as from the a...
During the last few years our knowledge about the X-ray emission from bodies within the solar system...
X-ray emissions from Jupiter, discovered by Eisnsten observatory and followed up by ROSAT, have bee...
Jupiter’s disk is bright in X-rays as H2 molecules in the atmosphere are very effective at scatterin...
We present the results of a spectral study of the soft X-ray emission (0.2-2.5 keV) from low-latitud...
[1] Soft X-ray emission has been observed from the low-latitude ‘‘disk’ ’ of both Jupiter and Saturn...
During November 26-29, 2003 XMM-Newton observed soft (0.2-2 keV) X-ray emission from Jupiter for 69...
Electrons accelerated on Earth by a rich variety of wave-scattering or stochastic processes generate...
Today the field of planetary X-rays is very dynamic and in the forefront of new research. Apart from...
Jupiter's polar X-ray aurora is dominated by a bright dynamic hot spot that is produced by precipita...