Theory of p-orbital bosons
by Challis, John Henton, Ph.D., YALE UNIVERSITY, 2009, 141 pages; 3395992

Abstract:

Bosons in the excited band of an optical lattice have garnered much interest due to their novel orbital-dependent phenomena. Upon reviewing the literature, we study the preparation of a metastable Mott insulator state within the first excited band of a ID optical lattice. The state is loaded by "lifting" atoms from the ground to the first excited band by means of a stimulated Raman transition. We determine the effect of pulse duration on the accuracy of the state preparation for the case of a Gaussian pulse shape.

Relaxation of the one-dimensional p-orbital insulator state occurs in two major stages: double-occupied sites occurring due to quantum fluctuations initially lead to interband transitions followed by a spreading of particles in the trap and thermalization. We find the characteristic relaxation times at the earliest stage and at asymptotically long times approaching equilibrium. Our theory is applicable to recent experiments performed with 1D optical lattices [T. Muller, S. Filling, A. Widera, and I. Bloch, Phys. Rev. Lett. 99, 200405 (2007)].

 
AdviserSteven M. Girvin
SchoolYALE UNIVERSITY
SourceDAI/B 71-01, p. , Apr 2010
Source TypeDissertation
SubjectsLow temperature physics; Condensed matter physics; Atomic physics; Theoretical physics
Publication Number3395992
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