Physical Review X · 2016 · 522 citations · 35 references
In a joint experimental and theoretical effort, we report on the formation of a macrodroplet state in an ultracold bosonic gas of erbium atoms with strong dipolar interactions. By precise tuning of the s-wave scattering length below the so-called dipolar length, we observe a smooth crossover of the ground state from a dilute Bose-Einstein condensate to a dense macrodroplet state of more than 2 10 4 atoms. Based on the study of collective excitations and loss features, we prove that quantum fluctuations stabilize the ultracold gas far beyond the instability threshold imposed by mean-field interactions. Finally, we perform expansion measurements, showing that although self-bound solutions are prevented by losses, the interplay between quantum stabilization and losses results in a minimal time-of-flight expansion velocity at a finite scattering length.
35
Feshbach resonances in ultracold gases
Cheng Chin, Rudolf Grimm, Paul S. Julienne et al. · Reviews of Modern Physics · 2010 · 3.7K citations · Full text
The physics of dipolar bosonic quantum gases
Reports on Progress in Physics · 2009 · 1.4K citations · Full text
Bose-Einstein Condensation of Erbium
K. Aikawa, Albert Frisch, Manfred J. Mark et al. · Physical Review Letters · 2012 · 791 citations · Full text
Dynamics of collapsing and exploding Bose–Einstein condensates
Elizabeth A. Donley, N. R. Claussen, Simon L. Cornish et al. · Nature · 2001 · 790 citations · Full text