J 2007

Extreme gravitational lensing in vicinity of Schwarzschild-de Sitter black holes

BAKALA, Pavel, Petr ČERMÁK, Stanislav HLEDÍK, Zdeněk STUCHLÍK, Kamila TRUPAROVÁ PLŠKOVÁ et. al.

Basic information

Original name

Extreme gravitational lensing in vicinity of Schwarzschild-de Sitter black holes

Authors

BAKALA, Pavel, Petr ČERMÁK, Stanislav HLEDÍK, Zdeněk STUCHLÍK and Kamila TRUPAROVÁ PLŠKOVÁ

Edition

CENTRAL EUROPEAN JOURNAL OF PHYSICS, WARSAW 41, VERSITA, 2007, 1895-1082

Other information

Language

English

Type of outcome

Článek v odborném periodiku

Confidentiality degree

není předmětem státního či obchodního tajemství

Organization unit

Faculty of Philosophy and Science in Opava

UT WoS

000251320600014

Keywords in English

black holes; cosmological constant; gravitational lensing; visualization; numerical relativity
Změněno: 12/4/2021 14:16, RNDr. Kateřina Klimovičová, Ph.D.

Abstract

V originále

We have developed a realistic, fully general relativistic computer code to simulate optical projection in a strong, spherically symmetric gravitational field. The standard theoretical analysis of optical projection for an observer in the vicinity of a Schwarzschild black hole is extended to black hole spacetimes with a repulsive cosmological constant, i.e, Schwarzschild de Sitterspacetimes. Influence of the cosmological constant is investigated for static observers and observers radially free-falling from the static radius. Simulations include effects of the gravitational lensing, multiple images, Doppler and gravitational frequency shift, as well as the intensity amplification. The code generates images of the sky for the static observer and a movie simulations of the changing sky for the radially free-falling observer. Techniques of parallel programming are applied to get a high performance and a fast run of the BHC simulation code. (C) Versita Warsaw and Springer-Verlag Berlin Heidelberg. All rights reserved.