Josephson Dynamics in 2D Ring-shaped Condensates
arXiv:2509.00533 · doi:10.1103/3249-x994
Abstract
We investigate Josephson transport in a fully closed, two-dimensional superfluid circuit formed by a ring-shaped 87Rb Bose-Einstein condensate that contains two optical barriers acting as movable weak links. Translating these barriers at controlled speeds imposes a steady bias current, enabling direct mapping of the current-chemical-potential (I-Δμ) characteristics. For narrow junctions (w \approx 1μm) the circuit exhibits a pronounced dc branch that terminates at a critical current I_c = 9(1) x 10^3 s^{-1}; above this threshold the system switches to an ac, resistive regime. Classical-field simulations that include the moving barriers quantitatively reproduce both the nonlinear I-Δμ curve and the measured I_c, validating the underlying microscopic picture. Analysis of the ensuing phase dynamics shows that dissipation is mediated by the nucleation and traversal of vortex-antivortex pairs through the junctions, while the bulk condensate remains globally phase-locked \textemdash direct evidence of the ring's topological constraint enforcing quantized circulation. These results establish a cold-atom analogue of a SQUID in which Josephson dynamics can be resolved at the single-vortex level, providing a versatile platform for atomtronic circuit elements, non-reciprocal Josephson devices, and on-chip Sagnac interferometers for multi-axis rotation sensing.
7 pages, 4 figures
References in corpus (40)
- Direct Observation of Tunneling and Nonlinear Self-Trapping in a single Bosonic Josephson Junction
- Phase space representation of quantum dynamics
- Observation of persistent flow of a Bose-Einstein condensate in a toroidal trap
- Superflow in a toroidal Bose-Einstein condensate: an atom circuit with a tunable weak link
- Dynamics and statistical mechanics of ultra-cold Bose gases using c-field techniques
- Realization of the field-free Josephson Diode
- Multi-axis inertial sensing with long-time point source atom interferometry
- Hysteresis in a quantized, superfluid atomtronic circuit
- 6-axis inertial sensor using cold-atom interferometry
- Driving phase slips in a superfluid atom circuit with a rotating weak link
- Experimental realization of Josephson junctions for an Atom SQUID
- Quantised supercurrent decay in an annular Bose-Einstein condensate
- Tunable non-reciprocal quantum transport through a dissipative Aharonov-Bohm ring in ultracold atoms
- Direct imaging of a digital-micromirror device for configurable microscopic optical potentials
- Atomtronic circuits: from many-body physics to quantum technologies
- A Josephson phase battery
- A ring trap for ultracold atoms
- Resistive flow in a weakly interacting Bose-Einstein condensate
- Strongly correlated superfluid order parameters from dc Josephson supercurrents
- Imprinting persistent currents in tunable fermionic rings
- An ideal Josephson junction in an ultracold two-dimensional Fermi gas
- Persistent currents in rings of ultracold fermionic atoms
- Vortex-Induced Phase Slip Dissipation in a Toroidal Bose-Einstein Condensate Flowing Through a Barrier
- Relaxation dynamics in the merging of independent condensates
- Tunneling transport of unitary fermions across the superfluid transition
- Decay of a superfluid current of ultra-cold atoms in a toroidal trap
- Realizing and optimizing an atomtronic SQUID
- Observation of the BKT Transition in a 2D Bose Gas via Matter-Wave Interferometry
- Josephson junction dynamics in a two-dimensional ultracold Bose gas
- Superfluidity and relaxation dynamics of a laser-stirred 2D Bose gas
- Perspective on new implementations of atomtronic circuits
- Shapiro steps in driven atomic Josephson junctions
- Persistent currents in ultracold gases
- Dynamic high-resolution optical trapping of ultracold atoms
- Collective modes and superfluidity of a two-dimensional ultracold Bose gas
- Implementation of an atomtronic SQUID in a strongly confined toroidal condensate
- Atomtronic multi-terminal Aharonov-Bohm interferometer
- Shapiro steps in strongly-interacting Fermi gases
- Observation of Shapiro steps in an ultracold atomic Josephson junction
- Realizing an Atomtronic AQUID in a Rotating-Box Potential