Publication:

The stringy S-matrix bootstrap: maximal spin and superpolynomial softness

cris.virtual.department

FSL

cris.virtual.parent-organization

IPHYS

cris.virtual.parent-organization

SB

cris.virtual.parent-organization

EPFL

cris.virtual.sciperId

235822

cris.virtual.unitId

13203

cris.virtual.unitManager

Penedones, João Miguel

cris.virtualsource.author-scopus

9572472d-3d14-4b9e-a8f0-c0e811692253

cris.virtualsource.department

9572472d-3d14-4b9e-a8f0-c0e811692253

cris.virtualsource.orcid

9572472d-3d14-4b9e-a8f0-c0e811692253

cris.virtualsource.parent-organization

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

cris.virtualsource.parent-organization

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

cris.virtualsource.parent-organization

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

cris.virtualsource.parent-organization

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

cris.virtualsource.rid

9572472d-3d14-4b9e-a8f0-c0e811692253

cris.virtualsource.sciperId

9572472d-3d14-4b9e-a8f0-c0e811692253

cris.virtualsource.unitId

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

cris.virtualsource.unitManager

ecf9f276-dfbd-473c-88bf-b4397d4c1c60

datacite.rights

metadata-only

dc.contributor.author

Haering, Kelian

dc.contributor.author

Zhiboedov, Alexander

dc.date.accessioned

2025-01-28T14:30:39Z

dc.date.available

2025-01-28T14:30:39Z

dc.date.created

2025-01-27

dc.date.issued

2024-10-09

dc.date.modified

2025-01-30T13:02:32.725721Z

dc.description.abstract

We explore the space of meromorphic amplitudes with extra constraints coming from the shape of the leading Regge trajectory. This information comes in two guises: it bounds the maximal spin of exchanged particles of a given mass; it leads to sum rules obeyed by the discontinuity of the amplitude, which express the softness of scattering at high energies. We assume that the leading Regge trajectory is linear, and we derive bounds on the low-energy Wilson coefficients using the dual and primal approaches. For the graviton-graviton scattering in four dimensions, the maximal spin constraint leads to slightly more stringent bounds than those that follow from general constraints of analyticity, crossing, and unitarity. The exponential softness at high energies is manifest in our primal approach and is not used in our implementation of the dual approach. Nevertheless, we observe the agreement between the bounds obtained from both. We conclude that high-energy superpolynomial softness does not leave an obvious imprint on the low-energy observables. We exhibit a unitary three-parameter deformation of the Veneziano amplitude for the open string case. It has a novel, exponentially soft behavior at high energies and fixed angles. We generalize the previous analysis of this regime and present a stringy version of the lower bound on high-energy, fixed-angle scattering by Cerulus and Martin.

en
dc.description.sponsorship

FSL

dc.identifier.doi

10.1007/JHEP10(2024)075

dc.identifier.isi

WOS:001336871600002

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/245775

dc.language.iso

English

dc.publisher

Springer Nature

dc.publisher.place

New York

dc.relation.grantno

949077

dc.relation.grantno

488649

dc.relation.grantno

200020 197160

dc.relation.grantno

NSF PHY-1748958

dc.relation.ispartof

JOURNAL OF HIGH ENERGY PHYSICS

dc.relation.issn

1029-8479

dc.relation.issn

1126-6708

dc.relation.journal

Journal of High Energy Physics

dc.subject

Scattering Amplitudes

dc.subject

Effective Field Theories

dc.subject

Superstrings and Heterotic Strings

dc.title

The stringy S-matrix bootstrap: maximal spin and superpolynomial softness

dc.type

text::journal::journal article::research article

en
dspace.entity.type

Publication

epfl.peerreviewed

REVIEWED

epfl.workflow.startDateTime

2025-01-27T16:46:15.797Z

epfl.writtenAt

EPFL

local.wos.sourceType

Article

oaire.citation.articlenumber

75

oaire.citation.edition

WOS.SCI

oaire.citation.issue

10

oairecerif.author.affiliation

École Polytechnique Fédérale de Lausanne

oairecerif.author.affiliation

European Organization for Nuclear Research (CERN)

oairecerif.funder

European Research Council (ERC)

oairecerif.funder

Simons Foundation

oairecerif.funder

Swiss National Science Foundation (SNSF)

oairecerif.funder

National Centre of Competence in Research SwissMAP

person.identifier.rid

HQI-0679-2023

person.identifier.rid

EHB-7455-2022

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