Quantum measurement-induced antiferromagnetic order and density modulations in ultracold Fermi gases in optical lattices
arXiv:1510.04883 · doi:10.1038/srep31196
Abstract
Ultracold atomic systems offer a unique tool for understanding behavior of matter in the quantum degenerate regime, promising studies of a vast range of phenomena covering many disciplines from condensed matter to quantum information and particle physics. Coupling these systems to quantized light fields opens further possibilities of observing delicate effects typical of quantum optics in the context of strongly correlated systems. Measurement backaction is one of the most fundamental manifestations of quantum mechanics and it is at the core of many famous quantum optics experiments. Here we show that quantum backaction of weak measurement can be used for tailoring long-range correlations of ultracold fermions, realizing quantum states with spatial modulations of the density and magnetization, thus overcoming usual requirement for a strong interatomic interactions. We propose detection schemes for implementing antiferromagnetic states and density waves. We demonstrate that such long-range correlations cannot be realized with local addressing, and they are a consequence of the competition between global but spatially structured backaction of weak quantum measurement and unitary dynamics of fermions.
Final version
References in corpus (35)
- Quantum States and Phases in Driven Open Quantum Systems with Cold Atoms
- Cold atoms in cavity-generated dynamical optical potentials
- An optically stimulated superconducting-like phase in K3C60 far above equilibrium Tc
- Quantum phases from competing short- and long-range interactions in an optical lattice
- Observation of antiferromagnetic correlations in the Hubbard model with ultracold atoms
- Observation of a superradiant Mott insulator in the Dicke-Hubbard model
- Entanglement with Negative Wigner Function of Three Thousand Atoms Heralded by One Photon
- Quantum Non-Demolition Detection of Strongly Correlated Systems
- Self-organised Limit-Cycles, Chaos and Phase-Slippage with a Superfluid inside an Optical Resonator
- Measuring the dynamic structure factor of a quantum gas undergoing a structural phase transition
- Cavity enhanced light scattering in optical lattices to probe atomic quantum statistics
- REVIEW. Quantum optics with ultracold quantum gases: towards the full quantum regime of the light-matter interaction
- Steering matter wave superradiance with an ultra-narrowband optical cavity
- Formation and dynamics of anti-ferromagnetic correlations in tunable optical lattices
- Multipartite Entangled Spatial Modes of Ultracold Atoms Generated and Controlled by Quantum Measurement
- Quantum optical lattices for emergent many-body phases of ultracold atoms
- Coherent light scattering from a two-dimensional Mott insulator
- Quantum Measurement-induced Dynamics of Many-Body Ultracold Bosonic and Fermionic Systems in Optical Lattices
- Squeezing and entanglement of density oscillations in a Bose-Einstein condensate
- Dissipative Binding of Lattice Bosons through Distance-Selective Pair Loss
- Non-Hermitian Dynamics in the Quantum Zeno Limit
- Many-body state engineering using measurements and fixed unitary dynamics
- Quantum simulators based on the global collective light-matter interaction
- Density wave instabilities of tilted fermionic dipoles in a multilayer geometry
- Thermodynamics and dynamics of atomic self-organization in an optical cavity
- Probing Matter-Field and Atom-Number Correlations in Optical Lattices by Global Nondestructive Addressing
- Cavity QED characterization of many-body atomic states in double-well potentials -- The role of dissipation
- Quantum properties of light scattered from structured many-body phases of ultracold atoms in quantum optical lattices
- Characterization of Bose-Hubbard Models with Quantum Non-demolition Measurements
- Bond Order via Light-Induced Synthetic Many-body Interactions of Ultracold Atoms in Optical Lattices
- Self-ordering dynamics of ultracold atoms in multicolored cavity fields
- Probabilistic Q-function distributions in fermionic phase-space
- Probing and Manipulating Fermionic and Bosonic Quantum Gases with Quantum Light
- Collective dynamics of multimode bosonic systems induced by weak quantum measurement
- Dissipative Preparation of Antiferromagnetic Order in the Fermi-Hubbard Model
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- Non-Hermitian Physics
- Cavity QED with Quantum Gases: New Paradigms in Many-Body Physics
- Feedback-Induced Quantum Phase Transitions Using Weak Measurements
- Gaussian Quantum Trajectories for the Variational Simulation of Open Quantum-Optical Systems
- Quantum optical feedback control for creating strong correlations in many-body systems
- Quantum Simulation of Competing Orders with Fermions in Quantum Optical Lattices
- Bond Order via Light-Induced Synthetic Many-body Interactions of Ultracold Atoms in Optical Lattices
- Dissipative Preparation of Antiferromagnetic Order in the Fermi-Hubbard Model
- Tuning the universality class of phase transitions by feedback: Open quantum systems beyond dissipation
- Hubbard model on the kagome lattice with time-reversal invariant flux and spin-orbit coupling
- Spin Entanglement and Magnetic Competition via Long-range Interactions in Spinor Quantum Optical Lattices
- Cavityless self-organization of ultracold atoms due to the feedback-induced phase transition
- Quantum State Reduction by Matter-Phase-Related Measurements in Optical Lattices
- Quantum wakes in lattice fermions
- Weak-Measurement-Induced Heating in Bose-Einstein Condensates