Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices: Models and Simulation Methods
This thesis investigates ultracold molecules as a resource for novel quantum many-body physics, in particular by utilizing their rich internal structure and strong, long-range dipole-dipole interactions. In addition, numerical methods based on matrix product states are analyzed in detail, and genera...
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oai:scholar.dlu.edu.vn:DLU123456789-597522023-11-11T06:50:22Z Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices: Models and Simulation Methods Wall, Michael L Many-body problem Low temperatures Optical lattices This thesis investigates ultracold molecules as a resource for novel quantum many-body physics, in particular by utilizing their rich internal structure and strong, long-range dipole-dipole interactions. In addition, numerical methods based on matrix product states are analyzed in detail, and general algorithms for investigating the static and dynamic properties of essentially arbitrary one-dimensional quantum many-body systems are put forth. Finally, this thesis covers open-source implementations of matrix product state algorithms, as well as educational material designed to aid in the use of understanding such methods. 2016-03-03T06:50:32Z 2016-03-03T06:50:32Z 2015 Book 978-3-319-14252-4 978-3-319-14251-7 https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/59752 en application/pdf Springer |
institution |
Thư viện Trường Đại học Đà Lạt |
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Thư viện số |
language |
English |
topic |
Many-body problem Low temperatures Optical lattices |
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Many-body problem Low temperatures Optical lattices Wall, Michael L Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices: Models and Simulation Methods |
description |
This thesis investigates ultracold molecules as a resource for novel quantum many-body physics, in particular by utilizing their rich internal structure and strong, long-range dipole-dipole interactions. In addition, numerical methods based on matrix product states are analyzed in detail, and general algorithms for investigating the static and dynamic properties of essentially arbitrary one-dimensional quantum many-body systems are put forth. Finally, this thesis covers open-source implementations of matrix product state algorithms, as well as educational material designed to aid in the use of understanding such methods. |
format |
Book |
author |
Wall, Michael L |
author_facet |
Wall, Michael L |
author_sort |
Wall, Michael L |
title |
Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices:
Models and Simulation Methods |
title_short |
Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices:
Models and Simulation Methods |
title_full |
Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices:
Models and Simulation Methods |
title_fullStr |
Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices:
Models and Simulation Methods |
title_full_unstemmed |
Quantum Many-Body Physics of Ultracold Molecules in Optical Lattices:
Models and Simulation Methods |
title_sort |
quantum many-body physics of ultracold molecules in optical lattices:
models and simulation methods |
publisher |
Springer |
publishDate |
2016 |
url |
https://scholar.dlu.edu.vn/thuvienso/handle/DLU123456789/59752 |
_version_ |
1819786001561681920 |