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Holographic Complexity of LST and Single Trace Tbar{T}, Jbar{T} and Tbar{J} deformations

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arxiv 2208.02314 v3 pith:J55ZZURD submitted 2022-08-03 hep-th gr-qc

Holographic Complexity of LST and Single Trace Tbar{T}, Jbar{T} and Tbar{J} deformations

classification hep-th gr-qc
keywords complexitylorentzcomputetheorytransitionviolationworkdeformation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This work is an extension of our previous work [1] where we exploited holography to compute the complexity characteristics of Little String Theory (LST), a nonlocal, nongravitational field theory which flows to a local 2d CFT in the IR under RG via an integrable irrelevant (TT) deformation. Here we look at the more general LST obtained by UV deforming the 2d CFT by incorporating Lorentz violating irrelevant JT and TJ deformations on top of TT deformation, in an effort to capture the novel signatures of Lorentz violation (on top of nonlocality) on quantum complexity. In anticipation of the fact that the dual field theory is Lorentz violating, we compute the volume complexity in two different Lorentz frames and the comparison is drawn between the results. It turns out that for this system the nonlocality and Lorentz violation effects are inextricably intertwined in the UV divergence structure of the quantum complexity. The coefficients of the divergences carry the signature of Lorentz boost violation. We also compute the subregion complexity which displays a (Hagedorn) phase transition with the transition point being the same as that for the phase transition of entanglement entropy [2]. These new results are consistent with our previous work [1]. Null warped AdS3 is treated as an interesting special case.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Holographic timelike complexity for de Sitter

    hep-th 2026-07 conditional novelty 6.0

    Timelike subregion volume complexity in de Sitter grows exponentially early and diverges hyperfast at a maximal duration; near the SdS black hole horizon the divergence is replaced by slower, claimed-nonlinear growth.

  2. Deformed BTZ Radiance and Single Trace $T\bar{T}$ Holography

    hep-th 2026-06 accept novelty 6.0

    Long-string emission from rotating λ-deformed BTZ black holes forces a unique origin B-field that matches the value needed for the string spectrum to agree with the Z_w sector of single-trace T T-bar deformed orbifold...

  3. Deformed BTZ Radiance and Single Trace $T\bar{T}$ Holography

    hep-th 2026-06 unverdicted novelty 5.0

    Generalizes holar wind to lambda-deformed rotating BTZ, finds emission rates set by Delta S_BH and fixes background B-field at origin to match Z_w twisted sector of single-trace TTbar orbifold.

  4. Holographic complexity of conformal fields in global de Sitter spacetime

    hep-th 2026-04 unverdicted novelty 5.0

    Holographic complexity of CFTs in global dS_d is computed via volume and action prescriptions in AdS foliation and brane setups, then compared to results from static and Poincare patches.