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The condensed phases of helium three provide an exciting laboratory for many fundamental questions in condensed matter physics. Due to its light mass and weak interatomic potential, the condensed phases of helium display quantum effects more dramatically than any other atomic system. Intuition based on classical experience is often misleading in these phases: the solid phase for instance is less ordered at low temperature than the liquid phase. The present book is unique in covering all the low temperature properties of helium three as liquid, superfluid, and solid. It provides an introduction to the extensive literature on helium three from the point of view of an experimentalist, and includes the analogy of its properties with the cosmological 'big bang'. Graduate students, researchers, and professionals in condensed matter physics and low temperature physics will find this the standard reference work for the decade to come.
This text investigates the fundamental properties of helium three in its condensed phases, focusing on how quantum effects manifest in this unique atomic system. E. R. Dobbs, a specialist in low-temperature physics, synthesizes experimental data to explain why classical physical intuition fails when applied to helium three. The book establishes a comprehensive framework for understanding the liquid, superfluid, and solid states of the element, bridging the gap between experimental observation and theoretical physics.
What You Will Find
Experts and researchers in the field of condensed matter physics recognize this work as a foundational reference for understanding the complexities of helium three. Readers frequently note the technical density of the prose, which is specifically calibrated for graduate-level students and professional physicists.
Page Count:
1086
Publication Date:
2001-07-12
Publisher:
Oxford University Press
ISBN-10:
0198506406
ISBN-13:
9780198506409
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