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Scattering of spinning black holes from exponentiated soft factors
by
Guevara, Alfredo
, Ochirov, Alexander
, Vines, Justin
in
Amplitudes
/ Black Holes
/ Classical and Quantum Gravitation
/ Elementary Particles
/ Gluing
/ Gravitons
/ Helicity
/ High energy physics
/ Multipoles
/ Particle spin
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ Scattering Amplitudes
/ Scattering angle
/ String Theory
/ Tensors
2019
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Scattering of spinning black holes from exponentiated soft factors
by
Guevara, Alfredo
, Ochirov, Alexander
, Vines, Justin
in
Amplitudes
/ Black Holes
/ Classical and Quantum Gravitation
/ Elementary Particles
/ Gluing
/ Gravitons
/ Helicity
/ High energy physics
/ Multipoles
/ Particle spin
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ Scattering Amplitudes
/ Scattering angle
/ String Theory
/ Tensors
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Scattering of spinning black holes from exponentiated soft factors
by
Guevara, Alfredo
, Ochirov, Alexander
, Vines, Justin
in
Amplitudes
/ Black Holes
/ Classical and Quantum Gravitation
/ Elementary Particles
/ Gluing
/ Gravitons
/ Helicity
/ High energy physics
/ Multipoles
/ Particle spin
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Quantum Physics
/ Regular Article - Theoretical Physics
/ Relativity Theory
/ Scattering Amplitudes
/ Scattering angle
/ String Theory
/ Tensors
2019
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Scattering of spinning black holes from exponentiated soft factors
Journal Article
Scattering of spinning black holes from exponentiated soft factors
2019
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Overview
A
bstract
We provide evidence that the classical scattering of two spinning black holes is controlled by the soft expansion of exchanged gravitons. We show how an exponentiation of Cachazo-Strominger soft factors, acting on massive higher-spin amplitudes, can be used to find spin contributions to the aligned-spin scattering angle, conjecturally extending previously known results to higher orders in spin at one-loop order. The extraction of the classical limit is accomplished via the on-shell leading-singularity method and using massive spinor-helicity variables. The three-point amplitude for arbitrary-spin massive particles minimally coupled to gravity is expressed in an exponential form, and in the infinite-spin limit it matches the effective stress-energy tensor of the linearized Kerr solution. A four-point gravitational Compton amplitude is obtained from an extrapolated soft theorem, equivalent to gluing two exponential three-point amplitudes, and becomes itself an exponential operator. The construction uses these amplitudes to: 1) recover the known tree-level scattering angle at all orders in spin, 2) recover the known one-loop linear-in-spin interaction, 3) match a previous conjectural expression for the one-loop scattering angle at quadratic order in spin, 4) propose new one-loop results through quartic order in spin. These connections link the computation of higher-multipole interactions to the study of deeper orders in the soft expansion.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V,SpringerOpen
Subject
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