# Model independent shape analysis of correlations in 1, 2 or 3 dimensions

@article{Csorgo1999ModelIS, title={Model independent shape analysis of correlations in 1, 2 or 3 dimensions}, author={Tamas Ferenc Csorgo and A. T. Szerzo}, journal={arXiv: High Energy Physics - Phenomenology}, year={1999} }

A generic, model-independent method for the analysis of the two-particle short-range correlations is presented, that can be utilized to describe e.g. Bose-Einstein (HBT or GGLP), statistical, dynamical or other short-range correlation functions. The method is based on a data-motivated choice for the zero-th order approximation for the shape of the correlation function, and on a systematic determination of the correction terms with the help of complete orthonormal set of functions. The Edgeworth…

## 6 Citations

Recent results on Bose-Einstein correlations by the PHENIX Experiment

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Bose-Einstein momentum correlation functions of identical bosons reveal the shape and size of the (soft) particle emitting source of the given particle. The widths of these correlation functions are…

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Model-Independent Femtoscopic Lévy Imaging for Elastic Proton-Proton Scattering

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A model independent Levy expansion method is introduced to describe nearly Levy shaped squared moduli of Fourier transforms. We apply this method to precisely characterize the most recent elastic…

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We detail here the convergence properties of a new model-independent imaging method, the Lévy expansion, that seems to play an important role in the analysis of the diﬀerential cross section of…

Proton structure and hollowness from Lévy imaging of pp elastic scattering

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The recently developed Levy imaging method enables to extract an important physics information on hadron structure at high energies and ultra-low momentum transfers directly from elastic scattering…

Odderon and proton substructure from a model-independent Lévy imaging of elastic pp and $$p\bar{p}$$pp¯ collisions

- Physics, MedicineThe European physical journal. C, Particles and fields
- 2019

The proton substructure with two different sizes at the ISR and LHC energies, that has striking similarity to a dressed quark and a dressed diquark is clearly identified.

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