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Numerical Conformal bootstrap with Analytic Functionals and Outer Approximation

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arxiv 2307.11144 v3 pith:QUORZFII submitted 2023-07-20 hep-th

Numerical Conformal bootstrap with Analytic Functionals and Outer Approximation

classification hep-th
keywords functionalsanalyticbootstrapconformalnumericalapplicationapproximationcategory
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This paper explores the numerical conformal bootstrap in general spacetime dimensions through the lens of a distinct category of analytic functionals, previously employed in two-dimensional studies. We extend the application of these functionals to a more comprehensive backdrop, demonstrating their adaptability and efficacy in general spacetime dimensions above two. The bootstrap is implemented using the outer approximation methodology, with computations conducted in double precision. The crux of our study lies in comparing the performance of this category of analytic functionals with conventional derivatives at crossing symmetric points. It is worth highlighting that in our study, we identified some novel kinks in the scalar channel during the maximization of the gap in two-dimensional conformal field theory. Our numerical analysis indicates that these analytic functionals offer a superior performance, thereby revealing a potential alternative paradigm in the application of conformal bootstrap.

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Cited by 3 Pith papers

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  1. Understanding Anomalous Magnetothermal Transport via Disentangling Shear and Compression Phonons

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    Mode-selective spin-phonon coupling in spin-orbit-coupled Mott insulators generates a peak-dip-peak field dependence in spin heat current via Landauer transport and exact diagonalization.

  2. Upgrading Extremal Flows in the Space of Derivatives

    hep-th 2026-04 unverdicted novelty 6.0

    A prototype successfully upgrades low-order extremal flow solutions to high numerical order for gap maximization in a simple spinning modular bootstrap test case.

  3. Understanding Anomalous Magnetothermal Transport via Disentangling Shear and Compression Phonons

    cond-mat.str-el 2026-03 unverdicted novelty 5.0

    Mode-selective spin-phonon coupling of shear versus compression phonons produces a peak-dip-peak magnetothermal heat current in spin-orbit-coupled Mott insulators.