2020
			
	    
	
	
    Echoes in brane worlds: Ringing at a black hole-wormhole transition
BRONNIKOV, Kirill A. and Roman KONOPLYABasic information
Original name
Echoes in brane worlds: Ringing at a black hole-wormhole transition
	Authors
BRONNIKOV, Kirill A. and Roman KONOPLYA (804 Ukraine, belonging to the institution)
			Edition
 Physical Review D, 2020, 2470-0010
			Other information
Language
English
		Type of outcome
Article in a journal
		Field of Study
10308 Astronomy
		Country of publisher
United States of America
		Confidentiality degree
is not subject to a state or trade secret
		References:
Impact factor
Impact factor: 5.296
			RIV identification code
RIV/47813059:19630/20:A0000033
		Organization unit
Institute of physics in Opava
			UT WoS
000517965700006
		EID Scopus
2-s2.0-85083574507
		Keywords in English
NORMAL-MODES
		Tags
Tags
International impact, Reviewed
		Links
GA19-03950S, research and development project. 
			
				
				Changed: 20/4/2021 00:10, Mgr. Pavlína Jalůvková
				
		Abstract
In the original language
Echoes are known as modifications of the usual quasinormal ringing of a black hole at late times because of the deviation of space-time from the initial black hole geometry in a small region near its event horizon. We consider a class of brane-world model solutions of the Shiromizu-Maeda-Sasaki equations, which describe both black holes and wormholes and interpolate between them via a continuous parameter. In this way the brane-world scenario provides a natural model for wormholes mimicking the black hole behavior if the continuous parameter is chosen near the threshold with a black hole solution. We show that in the vicinity of this threshold interpolating between black holes and wormholes, quasinormal ringing of the wormholes at the initial stage is indistinguishable from that of the black holes with nearby values of the above parameter, but at later times the signal is modified by intensive echoes. We notice that the black hole mimickers that are wormholes near the threshold have the largest quality factor and are therefore the best oscillators among the considered examples.