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We review two inter-related topics. First, we consider the behaviour of "soft" scattering observables, such as sigma_{tot}, dsigma_{el}/dt, dsigma_{SD}/dtdM^2, particle multiplicities etc., at high-energy proton-(anti)proton colliders. We…

High Energy Physics - Phenomenology · Physics 2009-10-02 A. D. Martin , M. G. Ryskin , V. A. Khoze

The forward physics program of the CMS experiment at the LHC spans a broad range of diverse physics topics including studies of low-x QCD and diffractive scattering, multi-parton interactions and underlying event structure, gamma-mediated…

High Energy Physics - Experiment · Physics 2019-08-13 Dmytro Volyanskyy

We discuss the special challenges posed by measuring diffractive and forward physics at the LHC at high luminosity and the solutions proposed by the FP420 R&D collaboration.

Instrumentation and Detectors · Physics 2007-05-23 Monika Grothe

The goal of this report is to give a comprehensive overview of the rich field of forward physics, with a special attention to the topics that can be studied at the LHC. The report starts presenting a selection of the Monte Carlo simulation…

High Energy Physics - Phenomenology · Physics 2017-12-13 K. Akiba , M. Akbiyik , M. Albrow , M. Arneodo , V. Avati , J. Baechler , O. Villalobos Baillie , P. Bartalini , J. Bartels , S. Baur , C. Baus , W. Beaumont , U. Behrens , D. Berge , M. Berretti , E. Bossini , R. Boussarie , S. Brodsky , M. Broz , M. Bruschi , P. Bussey , W. Byczynski , J. C. Cabanillas Noris , E. Calvo Villar , A. Campbell , F. Caporale , N. Cartiglia , W. Carvalho , G. Chachamis , E. Chapon , C. Cheshkov , J. Chwastowski , R. Ciesielski , D. Chinellato , A. Cisek , V. Coco , P. Collins , J. G. Contreras , B. Cox , D. de Jesus Damiao , P. Davis , M. Deile , D. D'Enterria , D. Druzhkin , B. Ducloué , R. Dumps , R. Dzhelyadin , P. Dziurdzia , M. Eliachevitch , P. Fassnacht , F. Ferro , S. Fichet , D. Figueiredo , B. Field , D. Finogeev , R. Fiore , J. Forshaw , M. B. Gay Ducati , A. Gago Medina , M. Gallinaro , A. Granik , G. von Gersdorff , S. Giani , K. Golec-Biernat , V. P. Goncalves , P. Göttlicher , K. Goulianos , J. -Y. Grosslord , L. A. Harland-Lang , H. Van Haevermaet , M. Hentschinski , R. Engel , G. Herrera Corral , J. Hollar , L. Huertas , D. Johnson , I. Katkov , O. Kepka , M. Khakzad , L. Kheyn , V. Khachatryan , V. A. Khoze , S. Klein , M. van Klundert , F. Krauss , A. Kurepin , N. Kurepin , K. Kutak , E. Kuznetsova , G. Latino , P. Lebiedowicz , B. Lenzi , E. Lewandowska , S. Liu , A. Luszczak , M. Luszczak , J. D. Madrigal , M. Mangano , Z. Marcone , C. Marquet , A. D. Martin , T. Martin , M. I. Martinez Hernandez , C. Martins , C. Mayer , R. Mc Nulty , P. Van Mechelen , R. Macula , E. Melo da Costa , T. Mertzimekis , C. Mesropian , M. Mieskolainen , N. Minafra , I. L. Monzon , L. Mundim , B. Murdaca , M. Murray , H. Niewiadowski , J. Nystrand , E. G. de Oliveira , R. Orava , S. Ostapchenko , K. Osterberg , A. Panagiotou , A. Papa , R. Pasechnik , T. Peitzmann , L. A. Perez Moreno , T. Pierog , J. Pinfold , M. Poghosyan , M. E. Pol , W. Prado , V. Popov , M. Rangel , A. Reshetin , J. -P. Revol , M. Rijssenbeek , M. Rodriguez , B. Roland , C. Royon , M. Ruspa , M. Ryskin , A. Sabio Vera , G. Safronov , T. Sako , H. Schindler , D. Salek , K. Safarik , M. Saimpert , A. Santoro , R. Schicker , J. Seger , S. Sen , A. Shabanov , W. Schafer , G. Gil Da Silveira , P. Skands , R. Soluk , A. van Spilbeeck , R. Staszewski , S. Stevenson , W. J. Stirling , M. Strikman , A. Szczurek , L. Szymanowski , J. D. Tapia Takaki , M. Tasevsky , K. Taesoo , C. Thomas , S. R. Torres , A. Tricomi , M. Trzebinski , D. Tsybychev , N. Turini , R. Ulrich , E. Usenko , J. Varela , M. Lo Vetere , A. Villatoro Tello , A. Vilela Pereira , D. Volyanskyy , S. Wallon , G. Wilkinson , H. Wöhrmann , K. C. Zapp , Y. Zoccarato

Due to its unique pseudorapidity coverage and the ability to perform measurements at low transverse momenta, the LHCb detector allows a unique insight into particle production in the forward region at the LHC. Using large samples of…

High Energy Physics - Experiment · Physics 2013-05-03 Dmytro Volyanskyy

We review the detection capabilities in the forward direction of the various LHC experiments together with the associated physics programme. A selection of measurements accessible with near-beam instrumentation in various sectors (and…

High Energy Physics - Experiment · Physics 2008-11-26 David d'Enterria

Forward physics with CMS at the LHC covers a wide range of physics subjects, including very low-x QCD, underlying event and multiple interactions characteristics, gamma-mediated processes, shower development at the energy scale of primary…

High Energy Physics - Experiment · Physics 2008-12-18 Monika Grothe

Diffractive phenomena constitute a large fraction of interactions occurring in pp collisions at LHC. Because of the non-perturbative nature, their present understanding is still relatively poor and uncertain. One of the methods to study…

High Energy Physics - Phenomenology · Physics 2023-09-06 Rafał Staszewski

The two calorimeters CASTOR and ZDCs enhance the hermeticity of the CMS detector at the LHC by extending the rapidity coverage in the forward region. After having described these detectors, their forward physics capabilities are presented.…

Instrumentation and Detectors · Physics 2010-08-04 Benoit Roland

A rapidity gap program with great potential can be realized at the Large Hadron Collider, LHC, by adding a few simple forward shower counters (FSCs) along the beam line on both sides of the main central detectors, such as CMS. Measurements…

High Energy Physics - Experiment · Physics 2015-05-13 Michael Albrow , Albert De Roeck , Valery Khoze , Jerry Lamsa , E. Norbeck , Y. Onel , Risto Orava , M. G. Ryskin

The following effects in the nearly forward ("soft") region of the LHC are proposed to be investigated: 1) At small |t| the fine structure of the cone (Pomeron) shouldbe scrutinized: a) a break of the cone near $t\approx - 0.1 ~ GeV$^2, due…

High Energy Physics - Phenomenology · Physics 2014-11-18 R. Fiore , L. Jenkovszky , R. Orava , E. Predazzi , A. Prokudin , O. Selyugin

Close to one half of the LHC events are expected to be due to elastic or inelastic diffractive scattering. Still, predictions based on extrapolations of experimental data at lower energies differ by large factors in estimating the relative…

High Energy Physics - Experiment · Physics 2010-04-22 Mikael Kuusela , Jerry W. Lamsa , Eric Malmi , Petteri Mehtala , Risto Orava

The CMS/TOTEM and ATLAS collaborations carry out a program of forward physics with several near-beam detectors extending their coverage to high pseudorapidities. This instrumentation includes calorimeters (CASTOR and ZDC), tracking devices…

High Energy Physics - Experiment · Physics 2019-08-15 Xavier Rouby

We describe some of the future measurements to be performed by the CMS, TOTEM and ATLAS collaborations on hard diffraction in order to understand better the structure of the Pomeron. We also describe the prospects concerning the search for…

High Energy Physics - Phenomenology · Physics 2016-08-24 C. Royon

Measurements of soft and hard diffractive processes have been performed at the Tevatron p-pbar collider during the past decade. Diffractive events are studied by means of identification of one or more rapidity gaps and/or a leading…

High Energy Physics - Phenomenology · Physics 2017-08-23 Michele Gallinaro

The installation of forward proton detectors at the LHC will provide the possibility to perform new high-precision measurements, opening a novel window on physics beyond the Standard Model. We review recent simulations and theoretical…

High Energy Physics - Phenomenology · Physics 2015-04-21 Sylvain Fichet

The LHC will soon provide proton-proton collisions at the unprecedented center of mass energy, $\sqrt{s}=$14 TeV. This not only allows us to probe new regions of high-$p_T$ physics, but also low-$x$ and forward physics. A selection of…

High Energy Physics - Phenomenology · Physics 2007-10-10 Andrew Hamilton

This is the first of the series of papers which present a precision method of the day-by-day monitoring of the absolute LHC luminosity. The method is based on the measurement of the rate of coplanar lepton pairs produced in peripheral…

High Energy Physics - Experiment · Physics 2008-11-26 M. W. Krasny , J. Chwastowski , K. Slowikowski

The LHCb detector at the LHC offers unique coverage of forward rapidities for studies of Central Exclusive Production (CEP) and soft QCD. CEP measurements allow the investigation of the nature of pomerons, and provide constraints on low-x…

High Energy Physics - Experiment · Physics 2022-11-17 Luke McConnell

We propose a novel approach for discovering a light dark photon in the forward experiments at the LHC, including the SND@LHC and the FASER experiments. Assuming the dark photon is lighter than twice the electron mass and feebly interacts…

High Energy Physics - Phenomenology · Physics 2024-10-16 Yeong Gyun Kim , Kang Young Lee , Soo-hyeon Nam
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