Quantum phases in frustrated triangular and kagome optical lattices at negative absolute temperatures
POSTER
Abstract
We report on recent experiments investigating the phase diagram of bosons in the triangular and kagome optical lattices. We explore the frustrated physics of these lattices by creating negative absolute temperature states where the sign of the tunnelling is effectively inverted. Notably, in this scheme the Hamiltonian remains static and there is no Floquet heating, leading to long lifetimes. In the triangular lattice, we observe that in the frustrated case the critical interaction strength for the bosonic superfluid to Mott insulator transition is strongly reduced. We also investigate signatures of the chiral nature of the superfluid and the dynamics of the transition. In the kagome lattice, we have prepared a long-lived state of ultracold bosons in the flat band. We study the melting of the Mott insulator into the flat band and report on our latest measurements characterising the flat-band state with a variety of time-of-flight techniques.
Publication: Mehedi Hasan et al, Superfluid-Mott transition in a frustrated triangular optical lattice, Manuscript in preparation.<br>Luca Donini et al, Melting a bosonic Mott insulator into the flat band of an optical kagome lattice, Manuscript in preparation.
Presenters
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Luca Donini
Univ of Cambridge
Authors
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Luca Donini
Univ of Cambridge
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Mehedi Hasan
Univ of Cambridge
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Sompob Shanokprasith
Univ of Cambridge
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Daniel Braund
Univ of Cambridge
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Tobias Marozsak
Univ of Cambridge
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Liam Crane
Univ of Cambridge
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Tim Rein
Univ of Cambridge
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Marnix Barendregt
Univ of Cambridge, Max Planck Institute of Quantum Optics
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Daniel G Reed
Univ of Cambridge
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Max Melchner von Dydiowa
Univ of Cambridge
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Tiffany Harte
Univ of Cambridge
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Ulrich Schneider
Univ of Cambridge