Atomtronics with a spin: statistics of spin transport and non-equilibrium orthogonality catastrophe in cold quantum gases
arXiv:1808.02062 · doi:10.1103/PhysRevB.99.214505
Abstract
We propose to investigate the full counting statistics of nonequilibrium spin transport with an ultracold atomic quantum gas. The setup makes use of the spin control available in atomic systems to generate spin transport induced by an impurity atom immersed in a spin-imbalanced two-component Fermi gas. In contrast to solid-state realizations, in ultracold atoms spin relaxation and the decoherence from external sources is largely suppressed. As a consequence, once the spin current is turned off by manipulating the internal spin degrees of freedom of the Fermi system, the nonequilibrium spin population remains constant. Thus one can directly count the number of spins in each reservoir to investigate the full counting statistics of spin flips, which is notoriously challenging in solid state devices. Moreover, using Ramsey interferometry, the dynamical impurity response can be measured. Since the impurity interacts with a many-body environment that is out of equilibrium, our setup provides a way to realize the non-equilibrium orthogonality catastrophe. Here, even for spin reservoirs initially prepared in a zero-temperature state, the Ramsey response exhibits an exponential decay, which is in contrast to the conventional power-law decay of Anderson's orthogonality catastrophe. By mapping our system to a multi-step Fermi sea, we are able to derive analytical expressions for the impurity response at late times. This allows us to reveal an intimate connection of the decay rate of the Ramsey contrast and the full counting statistics of spin flips.
9+11 pages, 10 figures
References in corpus (29)
- Many-Body Physics with Ultracold Gases
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Experimental realization of a long-range antiferromagnet in the Hubbard model with ultracold atoms
- Observation of Fermi Polarons in a Tunable Fermi Liquid of Ultracold Atoms
- An On-Demand Coherent Single Electron Source
- Exploring 4D Quantum Hall Physics with a 2D Topological Charge Pump
- Attractive and repulsive Fermi polarons in two dimensions
- Quantum Noise as an Entanglement Meter
- Repulsive Fermi polarons in a resonant mixture of ultracold Li atoms
- Universal oscillations in counting statistics
- Probing Slow Relaxation and Many-Body Localization in Two-Dimensional Quasi-Periodic Systems
- Far-from-equilibrium spin transport in Heisenberg quantum magnets
- Minimal excitation states of electrons in one-dimensional wires
- Observation of Quantized Conductance in Neutral Matter
- Time dependent impurity in ultracold fermions: orthogonality catastrophe and beyond
- Universal many-body response of heavy impurities coupled to a Fermi sea
- Entanglement from Charge Statistics: Exact Relations for Many-Body Systems
- Spin Transport in a Mott Insulator of Ultracold Fermions
- Electron counting in quantum dots
- Rotation of quantum impurities in the presence of a many-body environment
- Atomtronics-enabled Quantum Technologies
- Coherence and clock shifts in ultracold Fermi gases with resonant interactions
- Spin pumping and measurement of spin currents in optical superlattices
- Detection of non-Gaussian Fluctuations in a Quantum Point Contact
- Wide-band detection of the third moment of shot noise by a hysteretic Josephson junction
- Conductivity spectrum of ultracold atoms in an optical lattice
- Variational approach for impurity dynamics at finite temperature
- Non-equilibrium 1D many-body problems and asymptotic properties of Toeplitz determinants
- Many-body interferometry of magnetic polaron dynamics
Cited by in corpus (8)
- Atomtronic circuits: from many-body physics to quantum technologies
- Perspective on new implementations of atomtronic circuits
- Unified Light-Matter Floquet Theory and its Application to Quantum Communication
- Full Counting Statistics of Spin-Flip/Conserving Charge Transitions in Pauli-Spin Blockade
- Matterwaves, Matterons, and the Atomtronic Transistor Oscillator
- Simulating quantum transport with ultracold atoms and interaction effects
- Observation of spin-space quantum transport induced by an atomic quantum point contact
- Signatures of the orthogonality catastrophe in a coherently driven impurity