1,264 research outputs found
Gravitational Lens Systems to probe Extragalactic Magnetic Fields
The Faraday rotation measurements of multiply-imaged gravitational lens
systems can be effectively used to probe the existence of large-scale ordered
magnetic fields in lensing galaxies and galaxy clusters. The available sample
of lens systems appears to suggest the presence of a coherent large-scale
magnetic field in giant elliptical galaxies somewhat similar to the spiral
galaxies.Comment: 11 pages, 1 figur
Role of the scalar field in gravitational lensing
A static and circularly symmetric lens characterized by mass and scalar
charge parameters is constructed. For the small values of the scalar charge to
the mass ratio, the gravitational lensing is qualitatively similar to the case
of the Schwarzschild lens; however, for large values of this ratio the lensing
characteristics are significantly different. The main features are the
existence of two or nil Einstein ring(s) and a radial critical curve, formation
of two or four images and possibility of detecting three images near the lens
for sources located at relatively large angular positions. Such a novel lens
may also be treated as a naked singularity lens.Comment: 11 pages using A&A LaTex, 3 figures included, misprints corrected,
changes in section five, two references added Journal- ref : Astronomy &
Astrophysics, 337(1) 1 (1998
Detecting gravitational lensing cosmic shear from samples of several galaxies using two-dimensional spectral imaging
Studies of weak gravitational lensing by large-scale structures require the
measurement of the distortions introduced to the shapes of distant galaxies at
the few percent level by anisotropic light deflection along the line of sight.
To detect this signal on 1-10 arcmin scales in a particular field, accurate
measurements of the correlations between the shapes of order 1000-10000
galaxies are required. This large-scale averaging is required to accommodate
the unknown intrinsic shapes of the background galaxies, even with careful
removal of systematic effects. Here an alternative is discussed. If it is
possible to measure accurately the detailed dynamical structure of the
background galaxies, in particular rotating disks, then it should be possible
to measure directly the cosmic shear distortion, as it generally leads to a
non-self-consistent rotation curve. Narrow spectral lines and excellent
two-dimensional spatial resolution are required. The ideal lines and telescope
are CO rotational transitions and the Atacama Large Millimeter Array (ALMA)
respectively.Comment: 12 pages, 4 figures, Expected to appear in ApJ Letters Vol. 570, 10
May 2002. Replaced with final proof version correcting minor typo
Performance Testing of Lidar Components Subjected to Space Exposure in Space via MISSE 7 Mission
.The objective of the Materials International Space Station Experiment (MISSE) is to study the performance of novel materials when subjected to the synergistic effects of the harsh space environment for several months. MISSE missions provide an opportunity for developing space qualifiable materials. Several laser and lidar components were sent by NASA Langley Research Center (LaRC) as a part of the MISSE 7 mission. The MISSE 7 module was transported to the international space station (ISS) via STS 129 mission that was launched on Nov 16, 2009. Later, the MISSE 7 module was brought back to the earth via the STS 134 that landed on June 1, 2011. The MISSE 7 module that was subjected to exposure in space environment for more than one and a half year included fiber laser, solid-state laser gain materials, detectors, and semiconductor laser diode. Performance testing of these components is now progressing. In this paper, the current progress on post-flight performance testing of a high-speed photodetector and a balanced receiver is discussed. Preliminary findings show that detector characteristics did not undergo any significant degradation
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