Heteronuclear Efimov Scenario in Ultracold Quantum Gases

Heteronuclear Efimov Scenario in Ultracold Quantum Gases

EnglishHardbackPrint on demand
Ulmanis, Juris
Springer, Berlin
EAN: 9783319518619
Print on demand
Delivery on Tuesday, 3. of December 2024
€50.60
Common price €56.22
Discount 10%
pc
Do you want this product today?
Oxford Bookshop Banská Bystrica
not available
Oxford Bookshop Bratislava
not available
Oxford Bookshop Košice
not available

Detailed information


This thesis represents a decisive breakthrough in our understanding of the physics of universal quantum-mechanical three-body systems.

The Efimov scenario is a prime example of how fundamental few-body physics features universally across seemingly disparate fields of modern quantum physics. Initially postulated for nuclear physics more than 40 years ago, the Efimov effect has now become a new research paradigm not only in ultracold atomic gases but also in molecular, biological and condensed matter systems. Despite a lot of effort since its first observations, the scaling behavior, which is a hallmark property and often referred to as the “holy grail” of Efimov physics, remained hidden until recently. In this work, the author demonstrates this behavior for the first time for a heteronuclear mixture of ultracold Li and Cs atoms, and pioneers the experimental understanding of microscopic, non-universalproperties in such systems. Based on the application of Born-Oppenheimer approximation, well known from molecular physics textbooks, an exceptionally clear and intuitive picture of heteronuclear Efimov physics is revealed.
EAN 9783319518619
ISBN 3319518615
Binding Hardback
Publisher Springer, Berlin
Publication date March 15, 2017
Pages 125
Language English
Dimensions 235 x 155
Country Switzerland
Readership Professional & Scholarly
Authors Ulmanis, Juris
Illustrations XVIII, 125 p. 45 illus., 44 illus. in color.
Edition 1st ed. 2017
Series Springer Theses