Unveiling the Proton Spin Decomposition at a Future Electron-ion Collider
Title | Unveiling the Proton Spin Decomposition at a Future Electron-ion Collider PDF eBook |
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Release | 2015 |
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We present a detailed assessment of how well a future electron-ion collider could constrain helicity parton distributions in the nucleon and, therefore, unveil the role of the intrinsic spin of quarks and gluons in the proton's spin budget. Any remaining deficit in this decomposition will provide the best indirect constraint on the contribution due to the total orbital angular momenta of quarks and gluons. Specifically, all our studies are performed in the context of global QCD analyses based on realistic pseudodata and in the light of the most recent data obtained from polarized proton-proton collisions at BNL-RHIC that have provided evidence for a significant gluon polarization in the accessible, albeit limited range of momentum fractions. We also present projections on what can be achieved on the gluon's helicity distribution by the end of BNL-RHIC operations. As a result, all estimates of current and projected uncertainties are performed with the robust Lagrange multiplier technique.
Do Gluons Carry Proton Spin? - Toward Resolving the Spin Crisis (445th Brookhaven Lecture).
Title | Do Gluons Carry Proton Spin? - Toward Resolving the Spin Crisis (445th Brookhaven Lecture). PDF eBook |
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Release | 2009 |
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Just as Earth and other planets spin within the solar system, subatomic quark and gluon particles spin within the protons and neutrons that spin within the nucleus of an atom. Quantum Chromodynamics (QCD) is a theory that describes interactions between subatomic particles and it has played a defining role in understanding the spin of protons and neutrons, which make up most of the visible mass in the universe. Experiments first completed at CERN and furthered at several other laboratories around the world revealed that surprisingly, quarks and their partnering anti-quarks are responsible for only 20 to 30 percent of proton spin. These findings pointed to what would become known as "spin crisis." More recent experiments at BNL's Relativistic Heavy Ion Collider (RHIC), the first collider to smash protons that are "polarized," or made to spin in the same orientation, have helped to isolate the role of the gluon's spin within the spinning proton in hopes of resolving this crisis. In his lecture, Bazilevsky will explain how data from RHIC's PHENIX and STAR detectors help to reveal the role of gluons in the proton's spin. Bazilevsky will also discuss long- and short-term plans to attain a deeper look into the proton spin structure, utilizing RHIC and its future upgrades.
Particle Physics at the Tercentenary of Mikhail Lomonosov
Title | Particle Physics at the Tercentenary of Mikhail Lomonosov PDF eBook |
Author | A. I. Studenikin |
Publisher | World Scientific |
Pages | 481 |
Release | 2012 |
Genre | Science |
ISBN | 9814436836 |
This volume is devoted to a wide variety of investigations, both in theory and experiment, of particle physics such as electroweak theory, fundamental symmetries, tests of the Standard Model and beyond, neutrino and astroparticle physics, heavy quark physics, non-perturbative QCD, quantum gravity effects, and present and future accelerator physics.
Particles and Nuclei
Title | Particles and Nuclei PDF eBook |
Author | Bogdan Povh |
Publisher | Springer Science & Business Media |
Pages | 389 |
Release | 2013-04-17 |
Genre | Science |
ISBN | 3662050234 |
The fourth edition includes new developments, in particular a new section on the double beta decay including a discussion of the possibility of a neutrinoless decay and its implications for the standard model.
An Introductory Course of Particle Physics
Title | An Introductory Course of Particle Physics PDF eBook |
Author | Palash B. Pal |
Publisher | Taylor & Francis |
Pages | 818 |
Release | 2014-07-29 |
Genre | Science |
ISBN | 1482216981 |
For graduate students unfamiliar with particle physics, An Introductory Course of Particle Physics teaches the basic techniques and fundamental theories related to the subject. It gives students the competence to work out various properties of fundamental particles, such as scattering cross-section and lifetime. The book also gives a lucid summary of the main ideas involved. In giving students a taste of fundamental interactions among elementary particles, the author does not assume any prior knowledge of quantum field theory. He presents a brief introduction that supplies students with the necessary tools without seriously getting into the nitty-gritty of quantum field theory, and then explores advanced topics in detail. The book then discusses group theory, and in this case the author assumes that students are familiar with the basic definitions and properties of a group, and even SU(2) and its representations. With this foundation established, he goes on to discuss representations of continuous groups bigger than SU(2) in detail. The material is presented at a level that M.Sc. and Ph.D. students can understand, with exercises throughout the text at points at which performing the exercises would be most beneficial. Anyone teaching a one-semester course will probably have to choose from the topics covered, because this text also contains advanced material that might not be covered within a semester due to lack of time. Thus it provides the teaching tool with the flexibility to customize the course to suit your needs.
Photon-hadron Interactions
Title | Photon-hadron Interactions PDF eBook |
Author | Richard P. Feynman |
Publisher | Addison-Wesley Longman |
Pages | 314 |
Release | 1989-01-21 |
Genre | Science |
ISBN |
Analyzes the theoretical questions related to electron and photon interactions at high energies.
The Anomalous Magnetic Moment of the Muon
Title | The Anomalous Magnetic Moment of the Muon PDF eBook |
Author | Fred Jegerlehner |
Publisher | Springer Science & Business Media |
Pages | 433 |
Release | 2008 |
Genre | Science |
ISBN | 3540726330 |
This book reviews the present state of knowledge of the anomalous magnetic moment a=(g-2)/2 of the muon. The muon anomalous magnetic moment is one of the most precisely measured quantities in elementary particle physics and provides one of the most stringent tests of relativistic quantum field theory as a fundamental theoretical framework. It allows for an extremely precise check of the standard model of elementary particles and of its limitations.