Metastability and avalanche dynamics in strongly-correlated gases with long-range interactions
Lorenz Hruby, Nishant Dogra, Manuele Landini, Tobias Donner, and, Tilman Esslinger

TL;DR
This study experimentally investigates the metastability and avalanche dynamics in a strongly-correlated bosonic gas with long-range interactions, revealing how competition between interactions leads to distinct states and rapid tunneling events.
Contribution
It demonstrates the role of long-range interactions in metastability and avalanche tunneling in a bosonic Mott insulator, supported by experimental observations and theoretical modeling.
Findings
Identification of two stable states: Mott insulator and density wave.
Observation of hysteresis indicating metastability.
Detection of rapid atom tunneling triggered by density modulation.
Abstract
We experimentally study the stability of a bosonic Mott-insulator against the formation of a density wave induced by long-range interactions, and characterize the intrinsic dynamics between these two states. The Mott-insulator is created in a quantum degenerate gas of 87-Rubidium atoms, trapped in a three-dimensional optical lattice. The gas is located inside and globally coupled to an optical cavity. This causes interactions of global range, mediated by photons dispersively scattered between a transverse lattice and the cavity. The scattering comes with an atomic density modulation, which is measured by the photon flux leaking from the cavity. We initialize the system in a Mott-insulating state and then rapidly increase the global coupling strength. We observe that the system falls into either of two distinct final states. One is characterized by a low photon flux, signaling a Mott…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Quantum, superfluid, helium dynamics · Advanced Thermodynamics and Statistical Mechanics
