<p>We show that the supergravity solutions for <InlineEquation ID="IEq1"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="13130_2025_25776_Article_IEq1.gif" Format="GIF" Height="22" Rendition="HTML" Resolution="72" Type="Linedraw" Width="8" /> </InlineMediaObject> <EquationSource Format="MATHML"><math display="inline"> <mfrac> <mn>1</mn> <mn>4</mn> </mfrac> </math></EquationSource> <EquationSource Format="TEX">\( \frac{1}{4} \)</EquationSource> </InlineEquation>-BPS intersecting systems of M2 and M5 branes are completely characterized by a single “maze” function that satisfies a non-linear “maze” equation similar to the Monge-Ampère equation. We also show that the near-brane limit of certain intersections are AdS<sub>3</sub>×S<sup>3</sup>×S<sup>3</sup> solutions warped over a Riemann surface, Σ. There is an extensive literature on these subjects and we construct mappings between various approaches and use brane probes to elucidate the relationships between the M2-M5 and AdS systems. We also use dualities to map our results onto other systems of intersecting branes. This work is motivated by the recent realization that adding momentum to M2-M5 intersections gives a supermaze that can reproduce the black-hole entropy without ever developing an event horizon. We take a step in this direction by adding a certain type of momentum charges that blackens the M2-M5 intersecting branes. The near-brane limit of these solutions is a BTZ<sup>extremal</sup>×S<sup>3</sup>×S<sup>3</sup> × Σ geometry in which the BTZ momentum is a function of the Riemann surface coordinates.</p>

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Maze topiary in supergravity

  • Iosif Bena,
  • Anthony Houppe,
  • Dimitrios Toulikas,
  • Nicholas P. Warner

摘要

We show that the supergravity solutions for 1 4 \( \frac{1}{4} \) -BPS intersecting systems of M2 and M5 branes are completely characterized by a single “maze” function that satisfies a non-linear “maze” equation similar to the Monge-Ampère equation. We also show that the near-brane limit of certain intersections are AdS3×S3×S3 solutions warped over a Riemann surface, Σ. There is an extensive literature on these subjects and we construct mappings between various approaches and use brane probes to elucidate the relationships between the M2-M5 and AdS systems. We also use dualities to map our results onto other systems of intersecting branes. This work is motivated by the recent realization that adding momentum to M2-M5 intersections gives a supermaze that can reproduce the black-hole entropy without ever developing an event horizon. We take a step in this direction by adding a certain type of momentum charges that blackens the M2-M5 intersecting branes. The near-brane limit of these solutions is a BTZextremal×S3×S3 × Σ geometry in which the BTZ momentum is a function of the Riemann surface coordinates.