Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice

In experiments with ultra-cold gases, two alkali atoms, that interact with repulsive or attractive potentials and are confined to an optical lattice, can form bound states. In order to compute the energy of such states formed by atoms in the lowest Bloch band, one needs to take into account the intr...

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Main Author: Borzov, Dmitry
Language:English
Published: University of British Columbia 2011
Online Access:http://hdl.handle.net/2429/39749
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-397492018-01-05T17:25:30Z Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice Borzov, Dmitry In experiments with ultra-cold gases, two alkali atoms, that interact with repulsive or attractive potentials and are confined to an optical lattice, can form bound states. In order to compute the energy of such states formed by atoms in the lowest Bloch band, one needs to take into account the intra-band corrections arising from contributions by higher Bloch bands. As it is hard to implement, known calculations tend to neglect them altogether thus setting up a limit for the precision of such computations. To address the problem we apply an approach that uses renormalization-group equations for an effective potential we introduce. It allows for the expression of the bound state energy in terms of the free-space interaction scattering length and parameters of confining potentials. Expressions for bound state energies in 1D, 2D and 3D optical lattices are reported. We show that the method we use can be easily tailored to various cases of atoms confined by external fields of other geometries. A known result for atoms confined to a quasi-2D system is reproduced as an example. Universality of the approach makes it a useful tool for such class of problems. Science, Faculty of Physics and Astronomy, Department of Graduate 2011-12-15T18:42:09Z 2011-12-15T18:42:09Z 2011 2012-05 Text Thesis/Dissertation http://hdl.handle.net/2429/39749 eng Attribution 3.0 Unported http://creativecommons.org/licenses/by/3.0/ University of British Columbia
collection NDLTD
language English
sources NDLTD
description In experiments with ultra-cold gases, two alkali atoms, that interact with repulsive or attractive potentials and are confined to an optical lattice, can form bound states. In order to compute the energy of such states formed by atoms in the lowest Bloch band, one needs to take into account the intra-band corrections arising from contributions by higher Bloch bands. As it is hard to implement, known calculations tend to neglect them altogether thus setting up a limit for the precision of such computations. To address the problem we apply an approach that uses renormalization-group equations for an effective potential we introduce. It allows for the expression of the bound state energy in terms of the free-space interaction scattering length and parameters of confining potentials. Expressions for bound state energies in 1D, 2D and 3D optical lattices are reported. We show that the method we use can be easily tailored to various cases of atoms confined by external fields of other geometries. A known result for atoms confined to a quasi-2D system is reproduced as an example. Universality of the approach makes it a useful tool for such class of problems. === Science, Faculty of === Physics and Astronomy, Department of === Graduate
author Borzov, Dmitry
spellingShingle Borzov, Dmitry
Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
author_facet Borzov, Dmitry
author_sort Borzov, Dmitry
title Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
title_short Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
title_full Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
title_fullStr Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
title_full_unstemmed Renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
title_sort renormalization approach to bound state energy computation for two ultracold atoms in an optical lattice
publisher University of British Columbia
publishDate 2011
url http://hdl.handle.net/2429/39749
work_keys_str_mv AT borzovdmitry renormalizationapproachtoboundstateenergycomputationfortwoultracoldatomsinanopticallattice
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