In this work, we use inelastic scattering of light to study the response of inhomogeneous Mott-insulator gases to external excitations. The experimental setup and procedure to probe the atomic Mott states are presented in detail. We discuss the link between the energy absorbed by the gases and accessible experimental parameters as well as the linearity of the response to the scattering of light. We investigate the excitations of the system in multiple energy bands and a band-mapping technique allows us to identify band and momentum of the excited atoms. In addition, the momentum distribution in the Mott states that is spread over the entire first Brillouin zone enables us to reconstruct the dispersion relation in the high energy bands using a single Bragg excitation with a fixed momentum transfer.

Multi-band spectroscopy of inhomogeneous Mott-insulator states of ultracold bosons / D. Clément; N. Fabbri; L. Fallani; C. Fort; M. Inguscio. - In: NEW JOURNAL OF PHYSICS. - ISSN 1367-2630. - STAMPA. - 11:(2009), pp. 103030-1-103030-18.

Multi-band spectroscopy of inhomogeneous Mott-insulator states of ultracold bosons

FABBRI, NICOLE;FALLANI, LEONARDO;FORT, CHIARA;INGUSCIO, MASSIMO
2009

Abstract

In this work, we use inelastic scattering of light to study the response of inhomogeneous Mott-insulator gases to external excitations. The experimental setup and procedure to probe the atomic Mott states are presented in detail. We discuss the link between the energy absorbed by the gases and accessible experimental parameters as well as the linearity of the response to the scattering of light. We investigate the excitations of the system in multiple energy bands and a band-mapping technique allows us to identify band and momentum of the excited atoms. In addition, the momentum distribution in the Mott states that is spread over the entire first Brillouin zone enables us to reconstruct the dispersion relation in the high energy bands using a single Bragg excitation with a fixed momentum transfer.
2009
11
103030-1
103030-18
D. Clément; N. Fabbri; L. Fallani; C. Fort; M. Inguscio
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/386495
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