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相关论文: Smoothness of Classical Limit in KMOC Formalism

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KMOC (Kosower, Maybee, and O'Connell) formalism is an approach to analyze classical scattering in gauge theories and gravity using a class of ``inclusive'' observables which can be computed solely from on-shell amplitudes…

高能物理 - 理论 · 物理学 2026-03-20 Samim Akhtar , Alok Laddha , Arkajyoti Manna , Akavoor Manu

In this note, we investigate the implications of classical soft theorems for the formalism developed by Kosower, Maybee and O'Connell (KMOC) to derive classical observables in gauge theory and gravity from scattering amplitudes. In…

高能物理 - 理论 · 物理学 2023-01-13 Yilber Fabian Bautista , Alok Laddha

We compute classical gravitational observables for the scattering of two spinless black holes in general relativity and $\mathcal N {=} 8$ supergravity in the formalism of Kosower, Maybee, and O'Connell (KMOC). We focus on the gravitational…

高能物理 - 理论 · 物理学 2021-11-03 Enrico Herrmann , Julio Parra-Martinez , Michael S. Ruf , Mao Zeng

We present a systematic diagrammatic investigation of the classical limit of observables computed from scattering amplitudes in quantum field theory through the Kosower-Maybee-O'Connell (KMOC) formalism, motivated by the study of…

高能物理 - 理论 · 物理学 2025-07-01 Zeno Capatti , Mao Zeng

The KMOC formalism provides a systematic framework for extracting classical observables perturbatively from on-shell scattering amplitudes. In this work, we apply this formalism to compute electromagnetic observables in four dimensions,…

高能物理 - 理论 · 物理学 2026-01-05 Siddhartha Paul , Adarsh Vishwakarma

We study the formalism of Kosower-Maybee-O'Connell (KMOC) to extract classical impulse from quantum amplitude in the context of the partial wave expansion of a 2-to-2 elastic scattering. We take two complementary approaches to establish the…

高能物理 - 理论 · 物理学 2023-07-05 Hojin Lee , Sangmin Lee , Subhajit Mazumdar

We apply the recently developed formalism by Kosower, Maybee and O'Connell (KMO) to analyse the soft electromagnetic and soft gravitational radiation emitted by particles without spin in Four and higher dimensions. We use this formalism in…

高能物理 - 理论 · 物理学 2021-10-27 Manu A , Debodirna Ghosh , Alok Laddha , Athira P.

We study observables in the scattering of classical, spinning objects using the KMOC formalism. In particular, we derive formulas to higher order in spin and one loop $\mathcal{O}(G^2)$ for the spin kick and momentum impulse. Our derivation…

高能物理 - 理论 · 物理学 2024-12-24 Juan Pablo Gatica

The quantum field-theoretic approach to classical observables due to Kosower, Maybee and O'Connell provides a rigorous pathway from on-shell scattering amplitudes to classical perturbation theory. In this paper, we promote this formalism to…

高能物理 - 理论 · 物理学 2021-10-06 Rafael Aoude , Alexander Ochirov

We generalise the Kosower-Maybee-O'Connell (KMOC) formalism relating classical observables and scattering amplitudes to curved backgrounds. We show how to compute the final semiclassical state for a particle moving in a curved background in…

高能物理 - 理论 · 物理学 2022-09-14 Tim Adamo , Andrea Cristofoli , Anton Ilderton

We combine the observable-based formalism (KMOC), the analytic properties of the scattering amplitude, generalised unitarity and the heavy-mass expansion with a newly introduced IBP reduction for Fourier integrals, to provide an efficient…

高能物理 - 理论 · 物理学 2024-12-17 Giacomo Brunello , Stefano De Angelis

In this short note, we analyse low energy electromagnetic radiation for spinning particles using the KMOC formalism and the quantum soft theorems. In particular, we study low energy electromagnetic radiation emitted by the so-called…

高能物理 - 理论 · 物理学 2022-10-17 Manu A. , Debodirna Ghosh

We introduce a new coherent state expansion of the exponential representation of the S-matrix for the classical gravitational two-body problem. By combining the Kosower-Maybee-O'Connell (KMOC) formalism with the Dirac bracket structure…

高能物理 - 理论 · 物理学 2025-11-24 Francesco Alessio , Riccardo Gonzo , Canxin Shi

The KMOC (Kosower-Maybee-O'Connell) formalism establishes a bridge between quantum scattering amplitudes and classical observables in gravitational systems. In this work, we show how the weak-field limits of the four classical black hole…

高能物理 - 理论 · 物理学 2026-05-27 Jacobo Hernández C.

We employ the "KMOC" formalism of [1] to compute classical momentum deflections of spinning bodies with arbitrary spin orientations up to next-to-leading order (one loop). We do this in electrodynamics and gravity. The final result, valid…

高能物理 - 理论 · 物理学 2022-10-18 Gabriel Menezes , Matteo Sergola

We revisit the calculation of classical observables from causal response functions, following up on recent work by Caron-Huot at al. [JHEP 01 (2024) 139]. We derive a formula to compute asymptotic in-in observables from a particular soft…

高能物理 - 理论 · 物理学 2025-05-27 Shovon Biswas , Julio Parra-Martinez

We develop a formalism to compute non-perturbative 5-point scattering amplitudes and apply it to gravitational waveforms in the two-body problem for arbitrary trajectories. Drawing inspiration from Feshbach's projector formalism in nuclear…

高能物理 - 理论 · 物理学 2026-04-21 Katsuki Aoki , Andrea Cristofoli

We demonstrate the equivalence between KMOC and worldline formalisms for classical general relativity, highlighting how the Keldysh-Schwinger in-in formalism is contained in both of them even though the KMOC representation conventionally…

高能物理 - 理论 · 物理学 2023-09-06 Poul H. Damgaard , Elias Roos Hansen , Ludovic Planté , Pierre Vanhove

We study scalar-tensor gravitational theories using on-shell amplitude methods. We focus on theories with gravity coupled to a massless scalar via the Gauss-Bonnet and Chern-Simons terms. In this framework, we calculate the waveforms for…

高能物理 - 理论 · 物理学 2025-04-01 Adam Falkowski , Panagiotis Marinellis

We present a formalism for computing classically measurable quantities directly from on-shell quantum scattering amplitudes. We discuss the ingredients needed for obtaining the classical result, and show how to set up the calculation to…

高能物理 - 理论 · 物理学 2019-03-27 David A. Kosower , Ben Maybee , Donal O'Connell
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