Probing the Chiral Magnetic Wave with Charge-dependent Flow Measurements in Pb-Pb Collisions at the LHC

Probing the Chiral Magnetic Wave with Charge-dependent Flow Measurements in Pb-Pb Collisions at the LHC
Title Probing the Chiral Magnetic Wave with Charge-dependent Flow Measurements in Pb-Pb Collisions at the LHC PDF eBook
Author Shreyasi Acharya
Publisher
Total Pages 0
Release 2023
Genre
ISBN

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The Chiral Magnetic Wave (CMW) phenomenon is essential to provide insights into the strong interaction in QCD, the properties of the quark-gluon plasma, and the topological characteristics of the early universe, offering a deeper understanding of fundamental physics in high-energy collisions. Measurements of the charge-dependent anisotropic flow coefficients are studied in Pb-Pb collisions at center-of-mass energy per nucleon-nucleon collision sNN---√= 5.02 TeV to probe the CMW. In particular, the slope of the normalized difference in elliptic (v2) and triangular (v3) flow coefficients of positively and negatively charged particles as a function of their event-wise normalized number difference, is reported for inclusive and identified particles. The slope rNorm3 is found to be larger than zero and to have a magnitude similar to rNorm2, thus pointing to a large background contribution for these measurements. Furthermore, rNorm2 can be described by a blast wave model calculation that incorporates local charge conservation. In addition, using the event shape engineering technique yields a fraction of CMW (fCMW) contribution to this measurement which is compatible with zero. This measurement provides the very first upper limit for fCMW, and in the 10-60% centrality interval it is found to be 26% (38%) at 95% (99.7%) confidence level.

Strongly Interacting Matter in Magnetic Fields

Strongly Interacting Matter in Magnetic Fields
Title Strongly Interacting Matter in Magnetic Fields PDF eBook
Author Dmitri Kharzeev
Publisher Springer
Total Pages 630
Release 2014-07-08
Genre Science
ISBN 3642373054

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The physics of strongly interacting matter in an external magnetic field is presently emerging as a topic of great cross-disciplinary interest for particle, nuclear, astro- and condensed matter physicists. It is known that strong magnetic fields are created in heavy ion collisions, an insight that has made it possible to study a variety of surprising and intriguing phenomena that emerge from the interplay of quantum anomalies, the topology of non-Abelian gauge fields, and the magnetic field. In particular, the non-trivial topological configurations of the gluon field induce a non-dissipative electric current in the presence of a magnetic field. These phenomena have led to an extended formulation of relativistic hydrodynamics, called chiral magnetohydrodynamics. Hitherto unexpected applications in condensed matter physics include graphene and topological insulators. Other fields of application include astrophysics, where strong magnetic fields exist in magnetars and pulsars. Last but not least, an important new theoretical tool that will be revisited and which made much of the progress surveyed in this book possible is the holographic principle - the correspondence between quantum field theory and gravity in extra dimensions. Edited and authored by the pioneers and leading experts in this newly emerging field, this book offers a valuable resource for a broad community of physicists and graduate students.

Relativistic Heavy-ion Collisions

Relativistic Heavy-ion Collisions
Title Relativistic Heavy-ion Collisions PDF eBook
Author Rudolph C. Hwa
Publisher CRC Press
Total Pages 338
Release 1990
Genre Science
ISBN 9782881247347

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Papers of the June 1989 meeting in Beijing by the China Center of Advanced Science and Technology. This small book covers nucleus- nucleus collisions, states of the vacuum, and highly relativistic heavy ions in the experimental realm. Theoretical papers deal with quark-gluon plasma, and relativistic heavy ion collisions. Annotation copyrighted by Book News, Inc., Portland, OR

An Assessment of U.S.-Based Electron-Ion Collider Science

An Assessment of U.S.-Based Electron-Ion Collider Science
Title An Assessment of U.S.-Based Electron-Ion Collider Science PDF eBook
Author National Academies of Sciences, Engineering, and Medicine
Publisher National Academies Press
Total Pages 153
Release 2018-10-13
Genre Science
ISBN 0309478561

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Understanding of protons and neutrons, or "nucleons"â€"the building blocks of atomic nucleiâ€"has advanced dramatically, both theoretically and experimentally, in the past half century. A central goal of modern nuclear physics is to understand the structure of the proton and neutron directly from the dynamics of their quarks and gluons governed by the theory of their interactions, quantum chromodynamics (QCD), and how nuclear interactions between protons and neutrons emerge from these dynamics. With deeper understanding of the quark-gluon structure of matter, scientists are poised to reach a deeper picture of these building blocks, and atomic nuclei themselves, as collective many-body systems with new emergent behavior. The development of a U.S. domestic electron-ion collider (EIC) facility has the potential to answer questions that are central to completing an understanding of atoms and integral to the agenda of nuclear physics today. This study assesses the merits and significance of the science that could be addressed by an EIC, and its importance to nuclear physics in particular and to the physical sciences in general. It evaluates the significance of the science that would be enabled by the construction of an EIC, its benefits to U.S. leadership in nuclear physics, and the benefits to other fields of science of a U.S.-based EIC.

Electric Probes in Stationary and Flowing Plasmas: Theory and Application

Electric Probes in Stationary and Flowing Plasmas: Theory and Application
Title Electric Probes in Stationary and Flowing Plasmas: Theory and Application PDF eBook
Author Paul Myung-Ha Chung
Publisher Springer
Total Pages 176
Release 1975
Genre Plasma diagnostics
ISBN

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Gauge/String Duality, Hot QCD and Heavy Ion Collisions

Gauge/String Duality, Hot QCD and Heavy Ion Collisions
Title Gauge/String Duality, Hot QCD and Heavy Ion Collisions PDF eBook
Author Jorge Casalderrey-Solana
Publisher Cambridge University Press
Total Pages 469
Release 2023-07-31
Genre Science
ISBN 1009403494

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Introduction To The Theory Of The Early Universe: Hot Big Bang Theory (Second Edition)

Introduction To The Theory Of The Early Universe: Hot Big Bang Theory (Second Edition)
Title Introduction To The Theory Of The Early Universe: Hot Big Bang Theory (Second Edition) PDF eBook
Author Rubakov Valery A
Publisher World Scientific
Total Pages 596
Release 2017-06-29
Genre Science
ISBN 9813220058

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This book is written from the viewpoint that a deep connection exists between cosmology and particle physics. It presents the results and ideas on both the homogeneous and isotropic Universe at the hot stage of its evolution and in later stages. The main chapters describe in a systematic and pedagogical way established facts and concepts on the early and the present Universe. The comprehensive treatment, hence, serves as a modern introduction to this rapidly developing field of science. To help in reading the chapters without having to constantly consult other texts, essential materials from General Relativity and the theory of elementary particles are collected in the appendices. Various hypotheses dealing with unsolved problems of cosmology, and often alternative to each other, are discussed at a more advanced level. These concern dark matter, dark energy, matter–antimatter asymmetry, etc. Particle physics and cosmology underwent rapid development between the first and the second editions of this book. In the second edition, many chapters and sections have been revised, and numerical values of particle physics and cosmological parameters have been updated.