In a joint experimental, 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 × 104 atoms. Based on the study of collective excitations, 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 stab...
The energy of ultra-dilute quantum many-body systems is known to exhibit a universal dependence on t...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...
In a joint experimental and theoretical effort, we report on the formation of a macrodroplet state i...
We study the beyond-mean-field corrections to the energy of a dipolar Bose gas confined to two dimen...
Bose-Einstein condensatesquantum mixturesquantum liquidsquantum fluctuationsQuantum droplets are sma...
We numerically study the many-body physics of molecular Bose-Einstein condensates with strong dipole...
We explored interaction cold atoms in new quantum regimes that have no prior analogue in condensed m...
The high degree of control of ultracold atoms has made these systems ideal candidates to identify an...
Recent advances in the tunability of ultracold atomic gases have created opportunities for studying ...
Understanding the effect of interactions in quantum many-body systems presents some of the most comp...
We determine the effects of quantum fluctuations about the T=0 mean-field solution of the BCS-BEC cr...
Bose-Einstein Condensates (BECs) are realized with dilute gases in trapped geometries and are compos...
A strongly correlated Luttinger-liquid behavior is found to emerge well beyond the Tonks-Girardeau (...
Remarkable progress in the field of experimental quantum physics has enabled the preparation of quan...
The energy of ultra-dilute quantum many-body systems is known to exhibit a universal dependence on t...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...
In a joint experimental and theoretical effort, we report on the formation of a macrodroplet state i...
We study the beyond-mean-field corrections to the energy of a dipolar Bose gas confined to two dimen...
Bose-Einstein condensatesquantum mixturesquantum liquidsquantum fluctuationsQuantum droplets are sma...
We numerically study the many-body physics of molecular Bose-Einstein condensates with strong dipole...
We explored interaction cold atoms in new quantum regimes that have no prior analogue in condensed m...
The high degree of control of ultracold atoms has made these systems ideal candidates to identify an...
Recent advances in the tunability of ultracold atomic gases have created opportunities for studying ...
Understanding the effect of interactions in quantum many-body systems presents some of the most comp...
We determine the effects of quantum fluctuations about the T=0 mean-field solution of the BCS-BEC cr...
Bose-Einstein Condensates (BECs) are realized with dilute gases in trapped geometries and are compos...
A strongly correlated Luttinger-liquid behavior is found to emerge well beyond the Tonks-Girardeau (...
Remarkable progress in the field of experimental quantum physics has enabled the preparation of quan...
The energy of ultra-dilute quantum many-body systems is known to exhibit a universal dependence on t...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...
Dipolar quantum droplets are exotic quantum objects that are self-bound due to the subtle balance of...