Muon Collider Design PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Muon Collider Design PDF full book. Access full book title Muon Collider Design.

Muon Collider Design

Muon Collider Design
Author:
Publisher:
Total Pages: 43
Release: 2003
Genre:
ISBN:

Download Muon Collider Design Book in PDF, ePub and Kindle

Muon Colliders have unique technical and physics advantages and disadvantages when compared with both hadron and electron machines. They should thus be regarded as complementary. Parameters are given of 4 TeV and 0.5 TeV high luminosity??− colliders, and of a 0.5 TeV lower luminosity demonstration machine. We discuss the various systems in such muon colliders, starting from the proton accelerator needed to generate the muons and proceeding through muon cooling, acceleration and storage in a collider ring. Detector background, polarization, and nonstandard operating conditions are discussed.


Design of the Muon Collider Lattice: Present Status

Design of the Muon Collider Lattice: Present Status
Author:
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

Download Design of the Muon Collider Lattice: Present Status Book in PDF, ePub and Kindle

We discuss a preliminary design for a high luminosity 4 TeV center of mass[mu][sup+][mu][sup -] collider ring. A possible lattice for a muon collider has been described. The design satisfies most of the collider requirements, although it is not fully realistic. Error and tolerance analyses are yet to be performed as well as tracking to determine the dynamic aperture and achievable luminosity. In order to make the final-focus design realistic, drift spaces must be introduced between all magnet elements, and the lengths of the insertions will have to be increased in order to achieve the required dispersion values in the sextupoles with reasonable dipole fields.


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

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

Download An Assessment of U.S.-Based Electron-Ion Collider Science Book in PDF, ePub and Kindle

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.


High Luminosity Muon Collider Design

High Luminosity Muon Collider Design
Author:
Publisher:
Total Pages:
Release: 2001
Genre:
ISBN:

Download High Luminosity Muon Collider Design Book in PDF, ePub and Kindle

Muon Colliders have unique technical and physics advantages and disadvantages when compared with both hadron and electron machines. They should be regarded as complementary. Parameters are given of 4 TeV high luminosity[mu][sup+][mu][sup[minus]] collider, and of a 0.5 TeV lower luminosity demonstration machine. We discuss the various systems in such muon colliders.


Muon Collider Interaction Region Design

Muon Collider Interaction Region Design
Author:
Publisher:
Total Pages: 3
Release: 2010
Genre:
ISBN:

Download Muon Collider Interaction Region Design Book in PDF, ePub and Kindle

Design of a muon collider interaction region (IR) presents a number of challenges arising from low [beta]*


Muon Collider Design Status

Muon Collider Design Status
Author:
Publisher:
Total Pages: 4
Release: 2010
Genre:
ISBN:

Download Muon Collider Design Status Book in PDF, ePub and Kindle

Muon Collider (MC) - proposed by G.I. Budker and A.N. Skrinsky a few decades ago - is now considered as the most exciting option for the energy frontier machine in the post-LHC era. A national Muon Accelerator Program (MAP) is being formed in the USA with the ultimate goal of building a MC at the Fermilab site with c.o.m. energy in the range 1.5-3 TeV and luminosity of (almost equal to) 1.5 · 1034 cm−2 s−1. As the first step on the way to MC it envisages construction of a Neutrino Factory (NF) for high-precision neutrino experiments. The baseline scheme of the NF-MC complex is presented and possible options for its main components are discussed.


Design of a 6 TeV Muon Collider

Design of a 6 TeV Muon Collider
Author:
Publisher:
Total Pages:
Release: 2015
Genre:
ISBN:

Download Design of a 6 TeV Muon Collider Book in PDF, ePub and Kindle

A design of a muon collider ring with the center of mass energy of 6 TeV is presented. The ring circumference is about 6.3 km, and the $\beta$ functions at collision point are 1 cm in both planes. The ring linear optics, the non-linear chromaticity correction scheme in the Interaction Region (IR), and the additional non-linear field orthogonal knobs are described. The IR magnet specifications are based on the maximum pole tip field of 20 T in dipoles and 15 T in quadrupoles. The results of the beam dynamics optimization for maximum dynamic aperture are presented.


Muon Muon Collider

Muon Muon Collider
Author:
Publisher:
Total Pages: 481
Release: 2012
Genre:
ISBN:

Download Muon Muon Collider Book in PDF, ePub and Kindle

A feasibility study is presented of a 2 + 2 TeV muon collider with a luminosity of L = 1035 cm−2s−1. The resulting design is not optimized for performance, and certainly not for cost; however, it does suffice - we believe - to allow us to make a credible case, that a muon collider is a serious possibility for particle physics and, therefore, worthy of R and D support so that the reality of, and interest in, a muon collider can be better assayed. The goal of this support would be to completely assess the physics potential and to evaluate the cost and development of the necessary technology. The muon collider complex consists of components which first produce copious pions, then capture the pions and the resulting muons from their decay; this is followed by an ionization cooling channel to reduce the longitudinal and transverse emittance of the muon beam. The next stage is to accelerate the muons and, finally, inject them into a collider ring wich has a small beta function at the colliding point. This is the first attempt at a point design and it will require further study and optimization. Experimental work will be needed to verify the validity of diverse crucial elements in the design. Muons because of their large mass compared to an electron, do not produce significant synchrotron radiation. As a result there is negligible beamstrahlung and high energy collisions are not limited by this phenomena. In addition, muons can be accelerated in circular devices which will be considerably smaller than two full-energy linacs as required in an e - e− collider. A hadron collider would require a CM energy 5 to 10 times higher than 4 TeV to have an equivalent energy reach. Since the accelerator size is limited by the strength of bending magnets, the hadron collider for the same physics reach would have to be much larger than the muon collider. In addition, muon collisions should be cleaner than hadron collisions. There are many detailed particle reactions which are open to a muon collider and the physics of such reactions - what one learns and the necessary luminosity to see interesting events - are described in detail. Most of the physics accesible to an e+ - e− collider could be studied in a muon collider. In addition the production of Higgs bosons in the s-channel will allow the measurement of Higgs masses and total widths to high precision; likewise, t{bar t} and W+W− threshold studies would yield m{sub t} and m{sub w} to great accuracy. These reactions are at low center of mass energy (if the MSSM is correct) and the luminosity and?p/p of the beams required for these measurements is detailed in the Physics Chapter. On the other hand, at 2 + 2 TeV, a luminosity of L ≈ 1035 cm−2s−1 is desirable for studies such as, the scattering of longitudinal W bosons or the production of heavy scalar particles. Not explored in this work, but worth noting, are the opportunities for muon-proton and muon-heavy ion collisions as well as the enormous richness of such a facility for fixed target physics provided by the intense beams of neutrinos, muons, pions, kaons, antiprotons and spallation neutrons. To see all the interesting physics described herein requires a careful study of the operation of a detector in the very large background. Three sources of background have been identified. The first is from any halo accompanying the muon beams in the collider ring. Very carefully prepared beams will have to be injected and maintained. The second is due to the fact that on average 35% of the muon energy appears in its decay electron. The energy of the electron subsequently is converted into EM showers either from the synchrotron radiation they emit in the collider magnetic field or from direct collision with the surrounding material. The decays that occur as the beams traverse the low beta insert are of particular concern for detector backgrounds. A third source of background is e+ - e− pair creation from?+ -?− interaction. Studies of how to shield t ...


Fermilab Muon Collider Task Force

Fermilab Muon Collider Task Force
Author:
Publisher:
Total Pages: 3
Release: 2008
Genre:
ISBN:

Download Fermilab Muon Collider Task Force Book in PDF, ePub and Kindle

Muon Colliders offer a possible long term path to lepton-lepton collisions at center-of-mass energies √s ≥ 1 TeV. In October 2006 the Muon Collider Task Force (MCTF) proposed [1] a program of advanced accelerator R&D aimed at developing the Muon Collider concept. The proposed R&D program was motivated by progress on Muon Collider design in general, and in particular, by new ideas that have emerged on muon cooling channel design. The scope of the proposed MCTF R&D program includes muon collider design studies, helical cooling channel design and simulation, high temperature superconducting solenoid studies, an experimental program using beams to test cooling channel rf cavities and a 6D cooling demonstration channel. A summary is given of results from the first year of Muon Collider Task Force activities.


Design Concepts for Muon-Based Accelerators

Design Concepts for Muon-Based Accelerators
Author:
Publisher:
Total Pages: 4
Release: 2015
Genre:
ISBN:

Download Design Concepts for Muon-Based Accelerators Book in PDF, ePub and Kindle

Muon-based accelerators have the potential to enable facilities at both the Intensity and the Energy Frontiers. Muon storage rings can serve as high precision neutrino sources, and a muon collider is an ideal technology for a TeV or multi-TeV collider. Progress in muon accelerator designs has advanced steadily in recent years. In regard to 6D muon cooling, detailed and realistic designs now exist that provide more than 5 order-of-magnitude emittance reduction. Furthermore, detector performance studies indicate that with suitable pixelation and timing resolution, backgrounds in the collider detectors can be significantly reduced thus enabling high quality physics results. Thanks to these and other advances in design & simulation of muon systems, technology development, and systems demonstrations, muon storage-ring-based neutrino sources and a muon collider appear more feasible than ever before. A muon collider is now arguably among the most compelling approaches to a multi-TeV lepton collider. This paper summarizes the current status of design concepts for muon-based accelerators for neutrino factories and a muon collider.