Quantum Phase Transitions in Cold Atoms and Low Temperature Solids
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(ID 158344349)
Introduction to many-body physics in ultracold atomic gases.- Theoretical and experimental techniques used to explore many-body physics in cold atoms, especially optical lattices.- Radio-frequency spectroscopy: background and motivation.- RF spectra: a sum rule approach to trapped bosons in an optical lattice.- RF spectra: multiple peaked spectrum in a homogeneous system.- Radio-frequency spectra at finite temperature and other applications and theoretical developments of rf spectra.- RF spectra: summary, conclusions, and the future.- Rotation, inducing gauge fields, and exotic states of matter in cold atoms.- Stirring up fractional quantum Hall puddles.- Incorporating arbitrarily strong on-site correlations into lattice models.- Quantitative calculation of parameters for a model sufficiently general to capture all on-site correlations.- Summary, conclusions, and the future of induced gauge fields and lattices with on-site correlations.- Quantum criticality: introduction.- Quantum criticality in cold atoms.- The next steps in exploring quantum criticality in cold atoms.- Film mediated interactions alter correlations and spectral shifts of hydrogen adsorbed on helium films.- Molecular hydrogen solids.- Helium and hydrogen (super?)solids.- A Relating Scattering Amplitudes and T-Matrix.- B Ward Identities in the RF Spectrum for the Bose-Hubbard Model: Vertex Corrections, Symmetries, and Conservation Laws.-
EAN/ISBN : 9781441981790
Publisher(s): Springer, Berlin, Springer Science & Business Media
Format: ePub/PDF
Author(s):Hazzard, Kaden R.A.
EAN/ISBN : 9781441981790
Publisher(s): Springer, Berlin, Springer Science & Business Media
Format: ePub/PDF
Author(s):


