Share
Fr. 69.00
Haixin Huang, Fanglei Lin, François Méot, Vadim Ptitsyn, Vadim Ptitsyn et al
Polarized Beam Dynamics and Instrumentation in Particle Accelerators - USPAS Summer 2021 Spin Class Lectures
English · Hardback
Shipping usually within 2 to 3 weeks (title will be printed to order)
Description
This Open Access book is drawn from lectures dispensed at the U.S. Particle Accelerator School (USPAS) Summer 2021 Spin Class, by experts in the field. It is an introduction to the dynamics of spin in charged particle accelerators, and to the accelerator components and spin manipulation techniques, including helical snakes and spin rotators, which enable and allow preserving beam polarization.
It is aimed at graduate students or upper division undergraduate students with an interest in this multi-disciplinary field, which includes the future electron-ion collider at the Brookhaven National Laboratory, high energy lepton and proton collider projects, and other electric dipole moment search storage rings. It is also aimed at physicists or engineers working in accelerator-related fields who wish to familiarize themselves with spin dynamics and polarized beam concepts, tools, components, and purposes.
This is an open access book.
List of contents
Chapter 1. Past, Present, and Future of Polarized Hadron Beams (Thomas Roser).- Chapter 2. Spin Dynamics (François Méot) .- Chapter 3. Spinor Methods (François Méot) .- Chapter 4. Rotators and Snakes (Vadim Ptitsyn) .- Chapter 5. Polarization Preservation and Spin Manipulation (Haixin Huang) .- Chapter 6. Electron Polarization (Fanglei Lin) .- Chapter 7. Spin Matching (Vadim Ptitsyn) .- Chapter 8. Polarization in a GeV RLA (Yves Roblin) .- Chapter 9. Spin Codes (Vahid Ranjbar) .- Chapter 10. Polarized Ion Sources (Anatoli Zelenski) .- Chapter 11. Polarized Electron Sources (Joe Grames) .- Chapter 12. Ion Polarimetry (William Schmidke) .- Chapter 13. Electron Polarimetry (Dave Gaskell) .- Chapter 14. Spin Dynamics Tutorial: Numerical Simulations (Kiel Hock).
About the author
Dr. Haixin Huang earned his Ph.D. from Indiana University in 1995 with topic on polarized proton preservation. He became a research associate at Brookhaven Lab in 1995, an assistant physicist in 1997, and physicist in 2001. He is the Head of the Accelerator Physics Group of the Collider-Accelerator Department at Brookhaven Lab. At the Alternating Gradient Synchrotron (AGS), Dr. Huang developed and commissioned the solenoidal partial Siberian snake that modifies the spin tune and cures imperfection resonances. This instrument enabled the AGS to achieve 35-40 percent polarization levels at25 GeV and set a world record in 2004. Dr. Huang also led efforts to commission two partial snake systems and the horizontal tune jump system in the AGS to achieve proton polarization up to 70 percent and, again, set a world record in 2012. Dr. Huang's work in beam polarimetry led to the proton beam polarization monitoring system used in the AGS and RHIC's two storage rings. This system provides information critical for maintaining the proton beam polarization as the protons accelerate through depolarizing resonances. Dr. Huang received the Faraday Cup Award in 2006 for the polarimeter design that led to world-record polarization levels at RHIC. He is the author of over 230 publications, including more than 40 in peer reviewed journals. He is a member of the APS.
Dr. Fanglei Lin graduated from Indiana University receiving a Ph.D. degree in Accelerator Physics in 2007. Since 2005, while being a graduate student, she was deeply involved in experimental studies of the proton beam polarization dynamics at the Alternating Gradient Synchrotron (AGS) in the Collider Accelerator Department at Brookhaven National Laboratory (BNL). From 2007 to 2011, she played a key role in the design and optimization of deuteron electron dipole moment (dEDM) experiment in the Physics Department. She also worked on lattice development and dynamic aperture optimization of the National Synchrotron Light Source II (NSLS-II) project at BNL. In 2011, Dr. Lin joined Thomas Jefferson National Accelerator Facility (Jefferson Lab) as a Staff Scientist. She spent a decade on the development of an Electron Ion Collider at Jefferson Lab. She contributed to multiple aspects of its design including collider rings' lattice design, beam dynamics optimization, design and optimization of the interaction region, design and verification of polarization dynamics, electron cooling, etc. In 2021, Dr. Lin became a Senior Accelerator Physicist in the Neutron Sciences Directorate atOak Ridge National Laboratory. Dr. Lin's synergistic activities include serving on conference and workshop organizing committees and the research award committee, reviewing papers and proposals, mentoring Ph.D. graduate students, teaching accelerator schools, etc. She is the author of over 150 publications and presentations. She is a member of the APS.
Dr. Vadim Ptitsyn was educated as Accelerator Physicist in Novosibirsk State University, and then in the Budker Institute for Nuclear Physics (Russia), where he received his PhD for research on designs of Siberian Snakes and spin rotators. From 1997 Dr. V.Ptitsyn has been working in Brookhaven National Laboratory (USA), first, as Accelerator Scientist in a team running heavy ion and polarized proton collider RHIC, and then as Accelerator Scientist and Manager in the Electron-Ion Collider Project.
Product details
Assisted by | Haixin Huang (Editor), Fanglei Lin (Editor), François Méot (Editor), Vadim Ptitsyn (Editor), Vadim Ptitsyn et al (Editor) |
Publisher | Springer, Berlin |
Languages | English |
Product format | Hardback |
Released | 23.03.2023 |
EAN | 9783031167140 |
ISBN | 978-3-0-3116714-0 |
No. of pages | 408 |
Dimensions | 155 mm x 23 mm x 235 mm |
Illustrations | XX, 408 p. 1 illus. |
Series |
Particle Acceleration and Detection |
Subject |
Natural sciences, medicine, IT, technology
> Physics, astronomy
> Atomic physics, nuclear physics
|
Customer reviews
No reviews have been written for this item yet. Write the first review and be helpful to other users when they decide on a purchase.
Write a review
Thumbs up or thumbs down? Write your own review.