Quasi-geometrical Optics Approximation in Gravitational Lensing
نویسنده
چکیده
Abstract. The gravitational lensing of gravitational waves should be treated in the wave optics instead of the geometrical optics when the wave length λ of the gravitational waves is larger than the Schwarzschild radius of the lens mass M. The wave optics is based on the diffraction integral which represents the amplification of the wave amplitude by lensing. We study the asymptotic expansion of the diffraction integral in the powers of the wave length λ. The first term, arising from the short wavelength limit λ → 0, corresponds to the geometrical optics limit. The second term, being of the order of λ/M, is the leading correction term arising from the diffraction effect. By analysing this correction term, we find that (1) the lensing magnification μ is modified to μ (1 + δ), where δ is of the order of (λ/M)2, and (2) if the lens has cuspy (or singular) density profile at the center ρ(r) ∝ r−α (0 < α ≤ 2), the diffracted image is formed at the lens center with the magnification μ ∼ (λ/M)3−α.
منابع مشابه
Numerical wave optics and the lensing of gravitational waves by globular clusters
We consider the possible effects of gravitational lensing by globular clusters on gravitational waves from asymmetric neutron stars in our galaxy. In the lensing of gravitational waves, the long wavelength, compared with the usual case of optical lensing, can lead to the geometrical optics approximation being invalid, in which case a wave optical solution is necessary. In general, wave optical ...
متن کاملWave Effects in Gravitational Lensing of Gravitational Waves from Chirping Binaries
In the gravitational lensing of gravitational waves, the wave optics should be used instead of the geometrical optics when the wavelength λ of the gravitational waves is longer than the Schwarzschild radius of the lens mass ML. For the gravitational lensing of the chirp signals from the coalescence of the super massive black holes at the redshift zS ∼ 1 relevant to LISA, the wave effects become...
متن کاملPerturbations in the Kerr-Newman Dilatonic Black Hole Background: Maxwell Waves, the Dilaton Background and Gravitational Lensing
In this paper we continue the analysis of one of our previous papers and study the affect of the existence of a non-trivial dilaton background on the propagation of electromagnetic waves in the Kerr-Newman dilatonic black hole space-time. For this purpose we again employ the double expansion in both the background electric charge and the wave parameters of the relevant quantities in the Newman-...
متن کاملContinuous Limit of Multiple Lens Effect and the Optical Scalar Equation
We study the continuous limit of the multiple gravitational lensing theory based on the thin lens approximation. Under the approximation, we define a new, light-path dependent angular diameter distance d̃ and show that it satisfies the optical scalar equation. The distance provides relations between quantities used in the gravitational lensing theory (the convergence-, the shearand the twist-ter...
متن کاملThe finite source size effect and the wave optics in gravitational lensing
Abstract. We investigate the finite source size effect in the context of the wave optics in the gravitational lensing. The magnification of an extended source is presented in an analytic manner for the singular isothermal sphere lens model as well as the point mass lens model with the use of the thin lens approximation. The condition that the finite source size effect becomes substantial is dem...
متن کامل