activity
19942004
collaborators

7 papers

math-ph2004

The Quantum-mechanical Many Body Problem: The Bose Gas

Elliott H. Lieb, Robert Seiringer, Jan Philip Solovej +1

This article gives a detailed presentation of the authors' recent results on the ground state properties of the Bose gas. It is a much expanded version of a talk given by one of th…

math.FA2002

Poincare Inequalities in Punctured Domains

Elliott H. Lieb, Robert Seiringer, Jakob Yngvason

The classic Poincare inequality bounds the -norm of a function in a bounded domain in terms of some -norm of its gradient in . We generalize this i…

math-ph2002

The Ground State of the Bose Gas

Elliott H. Lieb, Robert Seiringer, Jan Philip Solovej +1

Now that the low temperature properties of quantum-mechanical many-body systems (bosons) at low density, , can be examined experimentally it is appropriate to revisit some of th…

math-ph2002

The Mathematical Structure of the Second Law of Thermodynamics

Elliott H. Lieb, Jakob Yngvason

The essence of the second law of classical thermodynamics is the `entropy principle' which asserts the existence of an additive and extensive entropy function, S, that is defined f…

math-ph1998

Quantum dots. A survey of rigorous results

Jakob Yngvason

The paper reviews rigorous results about quantum dots, in particular exact solutions for few electron dots and limit theorems for high magnetic fields and/or high electron number.

math-ph1998

A Guide to Entropy and the Second Law of Thermodynamics

Elliott H. Lieb, Jakob Yngvason

This article is a short version of a longer article to appear in Physics Reports (cond-mat/9708200). The essential postulates of classical thermodynamics are formulated, from which…