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We give a review of modern theoretical understanding of the physics of QCD at finite temperature. Three temperature regions are studied in details: the low temperature region where the system presents a rarefied pion gas and its properties…

High Energy Physics - Phenomenology · Physics 2008-11-26 A. V. Smilga

Quantum chromodynamics (QCD) with a general number of colors, $\Nc$, provides a powerful theoretical laboratory to explore the dynamics of non-Abelian gauge theories. Although $\Nc =3$ does not look a large number, the $1/\Nc$ expansion…

High Energy Physics - Phenomenology · Physics 2026-01-21 Toru Kojo

An outstanding goal of physics is to find solutions that describe hadrons in the theory of strong interactions, Quantum Chromodynamics (QCD). For this goal, the light-front Hamiltonian formulation of QCD (LFQCD) is a complementary approach…

These are lecture notes presented at the online 2020 Hadron Collider Physics Summer School hosted by Fermilab. These are an extension of lectures presented at the 2017 and 2018 CTEQ summer schools in arXiv:1709.06195 and still introduces…

High Energy Physics - Phenomenology · Physics 2020-08-25 Andrew J. Larkoski

I. Introduction II. Electrons at the Fermi level III. Conductance quantization of a quantum point contact IV. Optical analogue of the conductance quantization V. Classical electron focusing VI. Electron focusing as a transmission problem…

Mesoscale and Nanoscale Physics · Physics 2013-04-08 H. van Houten , C. W. J. Beenakker

In this chapter we provide a pedagogical introduction to the main theoretical aspects related to topology and $\theta$-dependence in Quantum Chromo-Dynamics (QCD), and to their phenomenological relevance in the Standard Model ($\eta^\prime$…

High Energy Physics - Lattice · Physics 2026-05-04 Claudio Bonanno , Claudio Bonati , Massimo D'Elia

These lecture notes contain an elementary introduction to lattice QCD at nonzero chemical potential. Topics discussed include chemical potential in the continuum and on the lattice; the sign, overlap and Silver Blaze problems; the phase…

High Energy Physics - Lattice · Physics 2016-06-22 Gert Aarts

These lecture notes bridge a gap between introductory quantum field theory (QFT) courses and state-of-the-art research in scattering amplitudes. They cover the path from basic definitions of QFT to amplitudes relevant for processes in the…

High Energy Physics - Theory · Physics 2025-05-16 Simon Badger , Johannes Henn , Jan Plefka , Simone Zoia

When hadrons scatter at high energies, strong color fields, whose dynamics is described by quantum chromodynamics (QCD), are generated at the interaction point. If one represents these fields in terms of partons (quarks and gluons), the…

High Energy Physics - Phenomenology · Physics 2009-11-13 S. Munier

We present a conceptually clear introduction to quantum theory, deriving the theory from scratch from the point of view of quantum information. Different subsets of these lectures were taught to a wide variety of audiences, including…

Popular Physics · Physics 2025-04-15 Barak Shoshany

We discus the role of QCD (Quantum Chromodynamics) to low energy phenomena involving the color-spin symmetry of the quark model. We then combine it with orbital and isospin symmetry to obtain wave functions with the proper permutation…

High Energy Physics - Phenomenology · Physics 2019-05-01 J. D. Vergados , D. Strottman

This lecture discusses the physics implemented by Monte Carlo event generators for hadron colliders. It details the construction of parton showers and the matching of parton showers to fixed-order calculations at higher orders in…

High Energy Physics - Phenomenology · Physics 2015-06-19 Stefan Höche

The past fifty years have seen the emergence of a new field of research in physics, the study of matter at extreme temperatures and densities. The theory of strong interactions, quantum chromodynamics (QCD), predicts that in this limit,…

High Energy Physics - Phenomenology · Physics 2015-06-05 Helmut Satz

We review the theoretical aspects relevant in the description of high energy heavy ion collisions, with an emphasis on the learnings about the underlying QCD phenomena that have emerged from these collisions.

High Energy Physics - Phenomenology · Physics 2022-08-31 Francois Gelis

In this series of three lectures, we discuss several aspects of high energy scattering among hadrons in Quantum Chromodynamics. The first lecture is devoted to a description of the parton model, Bjorken scaling and the scaling violations…

High Energy Physics - Phenomenology · Physics 2010-03-25 Francois Gelis , Tuomas Lappi , Raju Venugopalan

These notes grew from a series of lectures given by the authors during the last decade. They will be published in the proceedings of TASI 2021. After a brief introduction to quantum information theory tools, they are organized in four…

High Energy Physics - Theory · Physics 2023-03-24 Horacio Casini , Marina Huerta

A brief introduction to chiral perturbation theory, the effective field theory of quantum chromodynamics at low energies, is given.

High Energy Physics - Phenomenology · Physics 2015-06-25 B. Borasoy

A hierarchy of effective field theories is used to separate the contributions from different momentum scales and to calculate the free energy of QCD at high temperature in powers of the coupling constant up to order $g^5$. The behavior of…

High Energy Physics - Phenomenology · Physics 2007-05-23 Agustin Nieto

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

Heavy-ion collisions provide the only laboratory tests of relativistic quantum field theory at finite temperature. Understanding these is a necessary step in understanding the origins of our universe. These lectures introduce the subject to…

Nuclear Theory · Physics 2018-02-21 Sourendu Gupta