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Feshbach resonances in ultracold gases
Feshbach resonances are the essential tool to control the interaction between atoms in
ultracold quantum gases. They have found numerous experimental applications, opening up …
ultracold quantum gases. They have found numerous experimental applications, opening up …
Vortices in multicomponent Bose–Einstein condensates
We review the topic of quantized vortices in multicomponent Bose–Einstein condensates of
dilute atomic gases, with an emphasis on the two-component condensates. First, we review …
dilute atomic gases, with an emphasis on the two-component condensates. First, we review …
Spin–orbit-coupled Bose–Einstein condensates
Abstract Spin–orbit (SO) coupling—the interaction between a quantum particle's spin and its
momentum—is ubiquitous in physical systems. In condensed matter systems, SO coupling is …
momentum—is ubiquitous in physical systems. In condensed matter systems, SO coupling is …
Nonlinear atom interferometer surpasses classical precision limit
Interference is fundamental to wave dynamics and quantum mechanics. The quantum wave
properties of particles are exploited in metrology using atom interferometers, allowing for …
properties of particles are exploited in metrology using atom interferometers, allowing for …
Classical bifurcation at the transition from Rabi to Josephson dynamics
We report on the experimental demonstration of the internal bosonic Josephson effect in a
rubidium spinor Bose-Einstein condensate. The measurement of the full time dynamics in …
rubidium spinor Bose-Einstein condensate. The measurement of the full time dynamics in …
Fisher information and entanglement of non-Gaussian spin states
Entanglement is the key quantum resource for improving measurement sensitivity beyond
classical limits. However, the production of entanglement in mesoscopic atomic systems has …
classical limits. However, the production of entanglement in mesoscopic atomic systems has …
Controlling phase separation of binary Bose-Einstein condensates via mixed-spin-channel Feshbach resonance
We investigate controlled phase separation of a binary Bose-Einstein condensate in the
proximity of a mixed-spin-channel Feshbach resonance in the| F= 1, m F=+ 1〉 and| F= 2, m …
proximity of a mixed-spin-channel Feshbach resonance in the| F= 1, m F=+ 1〉 and| F= 2, m …
Spin-orbit coupled Bose-Einstein condensates
We consider a many-body system of pseudo-spin-1∕ 2 bosons with spin-orbit interactions,
which couple the momentum and the internal pseudo-spin degree of freedom created by …
which couple the momentum and the internal pseudo-spin degree of freedom created by …
Physics with coherent matter waves
K Bongs, K Sengstock - Reports on Progress in Physics, 2004 - iopscience.iop.org
This review discusses progress in the new field of coherent matter waves, particularly with
respect to Bose–Einstein condensates. We give a short introduction to Bose–Einstein …
respect to Bose–Einstein condensates. We give a short introduction to Bose–Einstein …
Parametrically excited star-shaped patterns at the interface of binary Bose-Einstein condensates
A Faraday-wave-like parametric instability is investigated via mean-field and Floquet
analysis in immiscible binary Bose-Einstein condensates. The condensates form a so-called …
analysis in immiscible binary Bose-Einstein condensates. The condensates form a so-called …