Thermodynamics of one-dimensional solvable models

Thermodynamics of one-dimensional solvable models

by Takahashi

1999

Browse books you can read free on Readfeed

No club is reading this yet — be the first to start one

Start a club free
About
This is a book about an important class of exactly solvable models in physics. The subject area is the Bethe-ansatz approach for a number of one-dimensional models, and the setting up of equations within this approach to determine the thermodynamics of these systems. It is a topic that crosses the boundaries between condensed matter physics, mathematics and field theory. The derivation and application of thermodynamic Bethe-ansatz equations for one-dimensional models are explained in detail. This technique is indispensable for physicists studying the low-temperature properties of one-dimensional substances. This book, written by one of the top physicists in this field, and the originator of much of the work in the field, will be of great interest to theoretical condensed matter physicists.

Discuss Thermodynamics of one-dimensional solvable models with other readers

Join or start a book club for Thermodynamics of one-dimensional solvable models 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 Thermodynamics of one-dimensional solvable models?

Sign up free on Readfeed, then browse public clubs or start your own club with Thermodynamics of one-dimensional solvable models as the current read. Invite friends with a share link and discuss together with live chat and AI discussion questions.

Can I discuss Thermodynamics of one-dimensional solvable models with other readers online?

Yes. Readfeed book clubs let you chat live, share progress, and join discussions about Thermodynamics of one-dimensional solvable models 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.