M-theory reconstruction from (2,0) CFT and the chiral algebra conjecture
A bstract We study various aspects of the M-theory uplift of the A N −1 series of (2 , 0) CFTs in 6d, which describe the worldvolume theory of N M5 branes in flat space. We show how knowledge of OPE coefficients and scaling dimensions for this CFT can be directly translated into features of the mome...
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Veröffentlicht in: | The journal of high energy physics 2018-08, Vol.2018 (8), p.1-39, Article 116 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A
bstract
We study various aspects of the M-theory uplift of the
A
N
−1
series of (2
,
0) CFTs in 6d, which describe the worldvolume theory of
N
M5 branes in flat space. We show how knowledge of OPE coefficients and scaling dimensions for this CFT can be directly translated into features of the momentum expansion of M-theory. In particular, we develop the expansion of the four-graviton S-matrix in M-theory via the flat space limit of four-point Mellin amplitudes. This includes correctly reproducing the known contribution of the
R
4
term from 6d CFT data. Central to the calculation are the OPE coefficients for half-BPS operators not in the stress tensor multiplet, which we obtain for finite
N
via the previously conjectured relation [
1
] between the quantum
W
N
algebra and the
A
N
−1
(2
,
0) CFT. We further explain how the 1
/N
expansion of
W
N
structure constants exhibits the structure of protected vertices in the M-theory action. Conversely, our results provide strong evidence for the chiral algebra conjecture. |
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ISSN: | 1029-8479 1029-8479 |
DOI: | 10.1007/JHEP08(2018)116 |