FORWARD PHYSICS AT THE LHC: ELASTIC SCATTERING

Author:

FIORE R.1,JENKOVSZKY L.23,ORAVA R.4,PREDAZZI E.5,PROKUDIN A.5,SELYUGIN O.6

Affiliation:

1. Dipartimento di Fisica, Università della Calabria, Instituto Nazionale di Fisica Nucleare, Gruppo collegato di Cosenza, I-87036 Arcavacata di Rende, Cosenza, Italy

2. Bogolyubov Institute for Theoretical Physics, Academy of Science of Ukraine, Kiev-143, 03680, Ukraine

3. RMKI, KFKI, POB 49, Budapest 114, H-1525, Hungary

4. Helsinki Institute of Physics and University of Helsinki, PL64, FI-00014 University of Helsinki, Finland

5. Dipartimento di Fisica Teorica, Università di Torino, Instituto Nazionale di Fisica Nucleare, Sezione di Torino Via P. Giuria 1, I-10125 Torino, Italy

6. BLTP, Joint Institute for Nuclear Research, 141980 Dubna, Moscow region, Russia

Abstract

The following effects in the nearly forward ("soft") region of the LHC are proposed to be investigated: • At small |t| the fine structure of the cone (Pomeron) should be scrutinized: (a) a break of the cone near t ≈ -0.1 GeV 2, due to the two-pion threshold, and required by t-channel unitarity, and (b) possible small-period oscillations between t = 0 and the dip region. • In measuring the elastic pp scattering and total pp cross-section at the LHC, the experimentalists are urged to treat the total cross-section σt, the ratio ρ of real to imaginary part of the forward scattering amplitude, the forward slope B and the luminosity [Formula: see text] as free parameters, and to publish model-independent results on dN/dt. • Of extreme interest are the details of the expected diffraction minimum in the differential cross-section. Its position, expected in the interval 0.4 < -t < 1 GeV 2 at the level of about 10-2 mb · GeV -2–10-1 mb · GeV -2, cannot be predicted unambiguously, and its depth, i.e. the ratio of dσ/dt at the minimum to that at the subsequent maximum (about -t = 5 GeV 2, which is about 5) is of great importance. • The expected slow-down with increasing |t| of the shrinkage of the second cone (beyond the dip-bump), together with the transition from an exponential to a power decrease in -t, will be indicative of the transition from "soft" to "hard" physics. Explicit models are proposed to help in quantifying this transition. • In a number of papers a limiting behavior, or saturation of the black disk limit (BDL), was predicted. This controversial phenomenon shows that the BDL may not be the ultimate limit, instead a transition from shadow to antishadow scattering may by typical of the LHC energy scale.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

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