Relativistic Heavy-Particle Collision Theory

Relativistic Heavy-Particle Collision Theory

by Derrick S.F. Crothers

About
If a heavy particle ion (atom, molecule, muon) collides with another in the gas phase at speeds approaching the speed of light, the time-dependent Dirac equation equation must be used for its description, including quantum electro-dynamic, special relativity and magnetic coupling effects. In this book we study one electron in the variety of rearrangement collisions: radiative and non-radiative capture, ionization, capture by pair (one electron, one positron) production and antihydrogen production. Our relativistic continuum distorted-wave theory accounts extremely well for the simultaneous behaviour of the electron with respect to the nuclear charges of the projectile and the target. This is the first book developed in this subject. Containing many diagrams and tables, and fully referenced, it goes beyond chapters in previous books. The relativistic continuum distorted-wave theory developed by the authors group, is shown to be fully Hermitean. Detailed mathematics are provided in nine appendices.

Discuss Relativistic Heavy-Particle Collision Theory with other readers

Join or start a book club for Relativistic Heavy-Particle Collision Theory on Readfeed. Live chat, shared reading progress, and AI discussion questions — free to get started.

Frequently asked questions

How do I join a book club for Relativistic Heavy-Particle Collision Theory?

Sign up free on Readfeed, then browse public clubs or start your own club with Relativistic Heavy-Particle Collision Theory as the current read. Invite friends with a share link and discuss together with live chat and AI discussion questions.

Can I discuss Relativistic Heavy-Particle Collision Theory with other readers online?

Yes. Readfeed book clubs let you chat live, share progress, and join discussions about Relativistic Heavy-Particle Collision Theory with readers worldwide — whether your club is virtual, in-person, or hybrid.

Is Readfeed free?

Yes. Creating an account and joining book clubs is free. Sign up to find readers who love the same books and start discussing today.