Simulation of chiral motion of excitation within the ground-state manifolds of neutral atoms
arXiv:2406.11291 · doi:10.1063/5.0211177
Abstract
Laser-induced gauge fields in neutral atoms serve as a means of mimicking the effects of a magnetic field, providing researchers with a platform to explore behaviors analogous to those observed in condensed matter systems under real magnetic fields. Here, we propose a method to generate chiral motion in atomic excitations within the neutral atomic ground-state manifolds. This is achieved through the application of polychromatic driving fields coupled to the ground-Rydberg transition, along with unconventional Rydberg pumping. The scheme offers the advantage of arbitrary adjustment of the effective magnetic flux by setting the relative phases between different external laser fields. Additionally, the effective interaction strength between the atomic ground states can be maintained at 10 kHz, surpassing the capabilities of the previous approach utilizing Floquet modulation. Notably, the proposed method can be readily extended to implement a hexagonal neutral atom lattice, serving as the fundamental unit in realizing the Haldane model.
Some typographical errors in the timeline of Fig.5(c), Eq.(14), and Eq.(A1) of the published version have been corrected
References in corpus (14)
- Probing many-body dynamics on a 51-atom quantum simulator
- An atom-by-atom assembler of defect-free arbitrary 2d atomic arrays
- Periodically-driven quantum systems: Effective Hamiltonians and engineered gauge fields
- Time-reversal symmetry breaking in circuit-QED based photon lattices
- Dissipative preparation of entanglement in optical cavities
- Chemical Basis of Trotter-Suzuki Errors in Quantum Chemistry Simulation
- Observation of a many-body-localized discrete time crystal with a programmable spin-based quantum simulator
- A concise review of Rydberg atom based quantum computation and quantum simulation
- A Quantum Approach to Classical Statistical Mechanics
- Topological bands with Chern number C=2 by dipolar exchange interactions
- Coherent and dissipative dynamics of entangled few-body systems of Rydberg atoms
- Dissipative stabilization of high-dimensional GHZ states for neutral atoms
- Chiral coupling between a ferromagnetic magnon and a superconducting qubit
- Ground-state chiral current via periodic modulation