Holographic flows to IR Lifshitz spacetimes
Recently we studied ‘vanishing’ horizon limits of ‘boosted’ black D3-brane geometry [ 1 ]. The type IIB solutions obtained by taking these special double limits were found to describe nonrelativistic Lifshitz spacetimes at zero temperature. In the present work we study these limits for TsT black-hol...
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container_title | The journal of high energy physics |
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creator | Singh, Harvendra |
description | Recently we studied ‘vanishing’ horizon limits of ‘boosted’ black D3-brane geometry [
1
]. The type IIB solutions obtained by taking these special double limits were found to describe nonrelativistic Lifshitz spacetimes at zero temperature. In the present work we study these limits for TsT black-hole solutions which include
B
-field. The new Galilean solutions describe a holographic RG flow from Schrödinger (
a
= 2) spacetime in UV to a nonrelativistic universe in the IR. |
doi_str_mv | 10.1007/JHEP04(2011)118 |
format | Article |
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1
]. The type IIB solutions obtained by taking these special double limits were found to describe nonrelativistic Lifshitz spacetimes at zero temperature. In the present work we study these limits for TsT black-hole solutions which include
B
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a
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]. The type IIB solutions obtained by taking these special double limits were found to describe nonrelativistic Lifshitz spacetimes at zero temperature. In the present work we study these limits for TsT black-hole solutions which include
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1
]. The type IIB solutions obtained by taking these special double limits were found to describe nonrelativistic Lifshitz spacetimes at zero temperature. In the present work we study these limits for TsT black-hole solutions which include
B
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subjects | Classical and Quantum Gravitation Elementary Particles High energy physics Physics Physics and Astronomy Quantum Field Theories Quantum Field Theory Quantum Physics Relativity Theory Spacetime String Theory |
title | Holographic flows to IR Lifshitz spacetimes |
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