An Introduction to the Passage of Energetic Particles through Matter

An Introduction to the Passage of Energetic Particles through Matter
Author: N.J Carron
Publisher: CRC Press
Total Pages: 384
Release: 2006-11-10
Genre: Science
ISBN: 1420012371

Identifying where to access data, extracting a needed subset from available resources, and knowing how to interpret the format in which data are presented can be time-consuming tasks for scientists and engineers. By collecting all of this information and providing a background in physics, An Introduction to the Passage of Energetic Particles thr

The Passage of Energetic Particles Through Matter

The Passage of Energetic Particles Through Matter
Author:
Publisher:
Total Pages: 0
Release: 2003
Genre:
ISBN:

This report collects cross sections for photons passing through matter. A thorough discussion of the background physics is provided, together with graphs for many processes. This material, together with additional similar material for electrons, heavy ions (protons and heavier) and neutrons, is to be published by IOP Publishing, in late 2004 or early 2005.

Handbook of Particle Detection and Imaging

Handbook of Particle Detection and Imaging
Author: Claus Grupen
Publisher: Springer Science & Business Media
Total Pages: 1251
Release: 2012-01-08
Genre: Science
ISBN: 3642132715

The handbook centers on detection techniques in the field of particle physics, medical imaging and related subjects. It is structured into three parts. The first one is dealing with basic ideas of particle detectors, followed by applications of these devices in high energy physics and other fields. In the last part the large field of medical imaging using similar detection techniques is described. The different chapters of the book are written by world experts in their field. Clear instructions on the detection techniques and principles in terms of relevant operation parameters for scientists and graduate students are given.Detailed tables and diagrams will make this a very useful handbook for the application of these techniques in many different fields like physics, medicine, biology and other areas of natural science.

Experimental Techniques in Nuclear and Particle Physics

Experimental Techniques in Nuclear and Particle Physics
Author: Stefaan Tavernier
Publisher: Springer Science & Business Media
Total Pages: 316
Release: 2010-02-06
Genre: Science
ISBN: 3642008291

I have been teaching courses on experimental techniques in nuclear and particle physics to master students in physics and in engineering for many years. This book grew out of the lecture notes I made for these students. The physics and engineering students have rather different expectations of what such a course should be like. I hope that I have nevertheless managed to write a book that can satisfy the needs of these different target audiences. The lectures themselves, of course, need to be adapted to the needs of each group of students. An engineering student will not qu- tion a statement like “the velocity of the electrons in atoms is ?1% of the velocity of light”, a physics student will. Regarding units, I have written factors h and c explicitly in all equations throughout the book. For physics students it would be preferable to use the convention that is common in physics and omit these constants in the equations, but that would probably be confusing for the engineering students. Physics students tend to be more interested in theoretical physics courses. However, physics is an experimental science and physics students should und- stand how experiments work, and be able to make experiments work. This is an open access book.

Techniques for Nuclear and Particle Physics Experiments

Techniques for Nuclear and Particle Physics Experiments
Author: William R. Leo
Publisher: Springer Science & Business Media
Total Pages: 385
Release: 2012-12-06
Genre: Science
ISBN: 3642579205

A treatment of the experimental techniques and instrumentation most often used in nuclear and particle physics experiments as well as in various other experiments, providing useful results and formulae, technical know-how and informative details. This second edition has been revised, while sections on Cherenkov radiation and radiation protection have been updated and extended.

Solar Energetic Particles

Solar Energetic Particles
Author: Donald V. Reames
Publisher: Springer
Total Pages: 136
Release: 2017-03-10
Genre: Science
ISBN: 3319508717

This concise primer introduces the non-specialist reader to the physics of solar energetic particles (SEP) and systematically reviews the evidence for the two main mechanisms which lead to the so-called impulsive and gradual SEP events. More specifically, the timing of the onsets, the longitude distributions, the high-energy spectral shapes, the correlations with other solar phenomena (e.g. coronal mass ejections), as well as the all-important elemental and isotopic abundances of SEPs are investigated. Impulsive SEP events are related to magnetic reconnection in solar flares and jets. The concept of shock acceleration by scattering on self-amplified Alfvén waves is introduced, as is the evidence of reacceleration of impulsive-SEP material in the seed population accessed by the shocks in gradual events. The text then develops processes of transport of ions out to an observer. Finally, a new technique to determine the source plasma temperature in both impulsive and gradual events is demonstrated. Last but not least the role of SEP events as a radiation hazard in space is mentioned and a short discussion of the nature of the main particle telescope designs that have contributed to most of the SEP measurements is given.

Passage of Charged Particles Through Matter

Passage of Charged Particles Through Matter
Author:
Publisher:
Total Pages:
Release: 1969
Genre:
ISBN:

Some commonly used formulas and principal data on the passage of fast charged particles through matter are presented. The areas covered include: atomic collision cross sections; stopping power for heavy charged particles; range-energy relations; shell corrections and I-values; straggling of heavy particles; coulomb and multiple scattering, and nuclear interactions; electrons; and mean energy for the formation of an ion pair. (GHT).