Single particle operators and their correlators in free N = 4 SYM
Single particle operators and their correlators in free N = 4 SYM
We consider a set of half-BPS operators in N = 4 super Yang-Mills theory which are appropriate for describing single-particle states of superstring theory on AdS5× S5. These single-particle operators are defined to have vanishing two-point functions with all multi-trace operators and therefore correspond to admixtures of single- and multi-traces. We find explicit formulae for all single-particle operators and for their two-point function normalisation. We show that single-particle U(N) operators belong to the SU(N) subspace, thus for length greater than one they are simply the SU(N) single-particle operators. Then, we point out that at large N, as the length of the operator increases, the single-particle operator naturally interpolates between the single-trace and the S3 giant graviton. At finite N, the multi-particle basis, obtained by taking products of the single-particle operators, gives a new basis for all half-BPS states, and this new basis naturally cuts off when the length of any of the single-particle operators exceeds the number of colours. From the two-point function orthogonality we prove a multipoint orthogonality theorem which implies vanishing of all near-extremal correlators. We then compute all maximally and next-to-maximally extremal free correlators, and we discuss features of the correlators when the extremality is lowered. Finally, we describe a half-BPS projection of the operator product expansion on the multi-particle basis which provides an alternative construction of four- and higher-point functions in the free theory.
1/N Expansion, AdS-CFT Correspondence, Supersymmetric Gauge Theory
Aprile, F.
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Drummond, J. M.
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Heslop, P.
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Paul, H.
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Sanfilippo, F.
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Santagata, M.
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Stewart, A.
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16 November 2020
Aprile, F.
4e76060f-f02b-461d-acdf-162efebd9a49
Drummond, J. M.
3ea15544-457f-4e72-8ad0-60f3136841db
Heslop, P.
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Paul, H.
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Sanfilippo, F.
14276d98-365a-4c37-a808-f4e9aff31fdc
Santagata, M.
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Stewart, A.
b74cf3fe-6d85-4e22-b278-84671b54b61a
Aprile, F., Drummond, J. M., Heslop, P., Paul, H., Sanfilippo, F., Santagata, M. and Stewart, A.
(2020)
Single particle operators and their correlators in free N = 4 SYM.
Journal of High Energy Physics, 2020 (11), [72].
(doi:10.1007/JHEP11(2020)072).
Abstract
We consider a set of half-BPS operators in N = 4 super Yang-Mills theory which are appropriate for describing single-particle states of superstring theory on AdS5× S5. These single-particle operators are defined to have vanishing two-point functions with all multi-trace operators and therefore correspond to admixtures of single- and multi-traces. We find explicit formulae for all single-particle operators and for their two-point function normalisation. We show that single-particle U(N) operators belong to the SU(N) subspace, thus for length greater than one they are simply the SU(N) single-particle operators. Then, we point out that at large N, as the length of the operator increases, the single-particle operator naturally interpolates between the single-trace and the S3 giant graviton. At finite N, the multi-particle basis, obtained by taking products of the single-particle operators, gives a new basis for all half-BPS states, and this new basis naturally cuts off when the length of any of the single-particle operators exceeds the number of colours. From the two-point function orthogonality we prove a multipoint orthogonality theorem which implies vanishing of all near-extremal correlators. We then compute all maximally and next-to-maximally extremal free correlators, and we discuss features of the correlators when the extremality is lowered. Finally, we describe a half-BPS projection of the operator product expansion on the multi-particle basis which provides an alternative construction of four- and higher-point functions in the free theory.
Text
JHEP11(2020)072
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Accepted/In Press date: 7 October 2020
Published date: 16 November 2020
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© 2020, The Author(s).
Keywords:
1/N Expansion, AdS-CFT Correspondence, Supersymmetric Gauge Theory
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Local EPrints ID: 470562
URI: http://eprints.soton.ac.uk/id/eprint/470562
ISSN: 1126-6708
PURE UUID: 93f57705-3ff9-4d9a-a9f1-bb48db7261ed
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Date deposited: 13 Oct 2022 16:33
Last modified: 16 Mar 2024 22:19
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Author:
F. Aprile
Author:
P. Heslop
Author:
H. Paul
Author:
F. Sanfilippo
Author:
M. Santagata
Author:
A. Stewart
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