Spin Squeezing under Non-Markovian Channels by Hierarchy Equation Method
arXiv:1204.0093 · doi:10.1103/PhysRevA.86.012308
Abstract
We study spin squeezing under non-Markovian channels, and consider an ensemble of independent spin-1/2 particles with exchange symmetry. Each spin interacts with its own bath, and the baths are independent and identical. For this kind of open system, the spin squeezing under decoherence can be investigated from the dynamics of the local expectations, and the multi-qubit dynamics can be reduced into the two-qubit one. The reduced dynamics is obtained by the hierarchy equation method, which is a exact without rotating-wave and Born-Markov approximation. The numerical results show that the spin squeezing displays multiple sudden vanishing and revival with lower bath temperature, and it can also vanish asymptotically.
7 pages, 4 figures
References in corpus (12)
- Entanglement detection
- Non-Markovian effects on the dynamics of entanglement
- A Quantum-Enhanced Prototype Gravitational-Wave Detector
- Entanglement dynamics of two independent qubits in environments with and without memory
- Spin squeezing and entanglement
- Dynamics of quantum dissipation systems interacting with bosonic canonical bath: Hierarchical equations of motion approach
- Spin squeezing of atomic ensembles via nuclear-electronic spin entanglement
- Entanglement Dynamics of Two Qubits in a Common Bath
- Spin squeezing of a cold atomic ensemble with the nuclear spin of one-half
- Spin squeezing in optical lattice clocks via lattice-based QND measurements
- Derivation of exact master equation with stochastic description: Dissipative harmonic oscillator
- Failure of the displaced-squeezed state for spin-boson models in the thermodynamic limit
Cited by in corpus (23)
- Fisher information under decoherence in Bloch representation
- Quantum Fisher information as signature of superradiant quantum phase transition
- Quantum Suppression of Ratchet Rectification in a Brownian System Driven by a Biharmonic Force
- Lower- and higher-order nonclassical properties of photon added and subtracted displaced Fock states
- Quantum Zeno and anti-Zeno effects in quantum dissipative systems
- Hybrid digital-analog simulation of many-body dynamics with superconducting qubits
- Self-excited current oscillations in a resonant tunneling diode described by a model based on the Caldeira-Leggett Hamiltonian
- Dynamical Spin Squeezing via Higher Order Trotter-Suzuki Approximation
- An approach to quantum transport based on reduced hierarchy equations of motion: Application to a resonant tunneling diode
- Creating a tunable spin squeezing via a time-dependent collective atom-photon coupling
- Dynamics and recovery of genuine multipartite Einstein-Podolsky-Rosen steering and genuine multipartite nonlocality for a dissipative Dirac system via Unruh effect
- Persistent spin squeezing of dissipative Lipkin-Meshkov-Glick Model embedded in a general thermal environment
- Searching for exceptional points and inspecting non-contractivity of trace distance in (anti-)symmetric systems
- Spin squeezing and concurrence under Lee-Yang dephasing channels
- Accessing the bath information in open quantum systems with the stochastic c-number Langevin equation method
- Zeno effect of the open quantum system in the presence of 1/f noise
- Pairwise quantum discord for a symmetric multi-qubit system in different types of noisy channels
- Robust Spin Squeezing Preservation in Photonic Crystal Cavities
- Limitations of strong coupling in non-Markovian quantum thermometry
- Detecting Non-Markovianity via Quantified Coherence: Theory and Experiments
- Photonic non-Markovianity identification by quantum process capabilities of non-CP processes
- Quantum synchronization and correlations of two qutrits in a non-Markovian bath
- Protecting spin squeezing from decoherence