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hep-ph2026

Massive On-shell Splitting Functions in Spinor-Helicity Formalism

Yi-Ning Wang, Chao Wu, Jiang-Hao Yu

Collinear splitting functions govern parton evolution, parton showers, and resummation at high-energy colliders. While on-shell spinor-helicity methods have successfully yielded ma…

hep-ph2026

Covariant Spinor Formalism for Multipole Expanded Form Factor

Hong Huang, Tuo Tan, Yi-Ning Wang +1

We present a systematic technique for constructing Lorentz covariant orbital-spin () bases for matrix elements of local operators and the associated form factors, thereby exten…

hep-ph2026

Covariant canonical-spinor amplitudes for partial wave analysis

Hong Huang, Yi-Ning Wang, Jiang-Hao Yu

We propose a covariant orbital-spin () decomposed amplitude for the partial wave analysis using the massive spinor-helicity formalism. First we review the traditional- meth…

hep-ph2026

Systematic Operator Construction for Non-relativistic Effective Field Theories: Hilbert Series versus Young Tensor

Yong-Kang Li, Yi-Ning Wang, Jiang-Hao Yu

This work establishes a systematic framework for operator construction in the non-relativistic effective field theory, incorporating both the three dimensional Euclidean symmetry a…

hep-ph2026

Massless-Massive Amplitude Correspondence II: Constructive Massive Amplitudes in Standard Model

Yu-Han Ni, Chao Wu, Jiang-Hao Yu

In the minimal helicity-chirality formalism, we systematically construct higher-point massive amplitudes from the fundamental building blocks: the contact three-point and four-poin…

hep-ph2026

Massless-Massive Amplitude Correspondence I: Helicity-chirality Matching and On-shell Higgsing

Yu-Han Ni, Chao Wu, Jiang-Hao Yu

In this work, the massless-massive correspondence for the on-shell scattering amplitudes is constructed so the massive amplitudes could inherit advantageous techniques developed in…