Amplifying quantum correlations with quench dynamics in a quantum spin
chain: Steady-states versus ground-states
- URL: http://arxiv.org/abs/2202.06341v2
- Date: Wed, 20 Apr 2022 17:12:52 GMT
- Title: Amplifying quantum correlations with quench dynamics in a quantum spin
chain: Steady-states versus ground-states
- Authors: Sasan Kheiri, Hadi Cheraghi, Saeed Mahdavifar
- Abstract summary: We analyze the behavior of steady-state quantum correlations (QCs) in the spin-1/2 transverse field XY chains analytically.
We show that steady-state QCs are strikingly greater than the equilibrium ones in its ground-state.
Our work may be testable with the current class of trapped-ion or ultracold-atom experiments.
- Score: 0.0
- License: http://creativecommons.org/publicdomain/zero/1.0/
- Abstract: We analyze the behavior of steady-state quantum correlations (QCs) in the
spin-1/2 transverse field XY chains analytically, in terms of quench dynamics
at zero-temperature. We show that steady-state QCs are strikingly greater than
the equilibrium ones in its ground-state, where a single quench is performed
from ferro- into para-magnetic phases. Another framework to amplify the QCs
here is a feasible protocol called double quench dynamics. To fulfill this
purpose, we probe a middle quench point and spending time T (defined as the
time passing from the middle quench point before reaching a second quench). By
doing so, both single and double quenches act as practical tools to control the
enhancement of the steady-state QCs in the final quenched point. In particular,
and in parallel to expectations for some other quantities, we indicate that the
nonequilibrium quantum phase transitions also can be identified by
nonanalyticities in the steady-state QCs. Our work may be testable with the
current class of trapped-ion or ultracold-atom experiments, and encourage the
possible potential in the quantum information field.
Related papers
- Thermalization and Criticality on an Analog-Digital Quantum Simulator [133.58336306417294]
We present a quantum simulator comprising 69 superconducting qubits which supports both universal quantum gates and high-fidelity analog evolution.
We observe signatures of the classical Kosterlitz-Thouless phase transition, as well as strong deviations from Kibble-Zurek scaling predictions.
We digitally prepare the system in pairwise-entangled dimer states and image the transport of energy and vorticity during thermalization.
arXiv Detail & Related papers (2024-05-27T17:40:39Z) - Real-time dynamics of false vacuum decay [49.1574468325115]
We investigate false vacuum decay of a relativistic scalar field in the metastable minimum of an asymmetric double-well potential.
We employ the non-perturbative framework of the two-particle irreducible (2PI) quantum effective action at next-to-leading order in a large-N expansion.
arXiv Detail & Related papers (2023-10-06T12:44:48Z) - Quantum coherence assisted dynamical phase transition [0.0]
We specialize our discussions on the one-dimensional transverse field quantum Ising model in the coherent Gibbs state.
After quenching the strength of the transverse field, the effects of quantum coherence are studied by Fisher zeros, rate function and winding number.
arXiv Detail & Related papers (2023-05-15T07:34:15Z) - Universality of critical dynamics with finite entanglement [68.8204255655161]
We study how low-energy dynamics of quantum systems near criticality are modified by finite entanglement.
Our result establishes the precise role played by entanglement in time-dependent critical phenomena.
arXiv Detail & Related papers (2023-01-23T19:23:54Z) - Predicting Critical Phases from Entanglement Dynamics in XXZ Alternating
Chain [0.0]
The quantum XXZ spin model with alternating bond strengths under magnetic field has a rich equilibrium phase diagram.
We show that the nearest neighbor bipartite and multipartite entanglement can detect quantum critical lines and phases in this model.
arXiv Detail & Related papers (2021-12-22T18:02:51Z) - Observation of Time-Crystalline Eigenstate Order on a Quantum Processor [80.17270167652622]
Quantum-body systems display rich phase structure in their low-temperature equilibrium states.
We experimentally observe an eigenstate-ordered DTC on superconducting qubits.
Results establish a scalable approach to study non-equilibrium phases of matter on current quantum processors.
arXiv Detail & Related papers (2021-07-28T18:00:03Z) - Room Temperature Quantum Coherent Revival in an Ensemble of Artificial
Atoms [0.0]
Control over quantum states, inherent to QCR, together with the dynamical QD properties present an opportunity for practical room temperature building blocks of quantum information processing.
arXiv Detail & Related papers (2020-10-28T19:40:13Z) - Nonequilibrium phase transition in transport through a driven quantum
point contact [19.444636864515726]
We study transport of noninteracting fermions through a periodically driven quantum point contact (QPC) connecting two tight-binding chains.
We find that the heating rate vanishes identically when the driving frequency exceeds the bandwidth of the chain.
This shows that a driven QPC can act as a frequency-controlled quantum switch.
arXiv Detail & Related papers (2020-06-03T17:15:57Z) - Quantum Statistical Complexity Measure as a Signalling of Correlation
Transitions [55.41644538483948]
We introduce a quantum version for the statistical complexity measure, in the context of quantum information theory, and use it as a signalling function of quantum order-disorder transitions.
We apply our measure to two exactly solvable Hamiltonian models, namely: the $1D$-Quantum Ising Model and the Heisenberg XXZ spin-$1/2$ chain.
We also compute this measure for one-qubit and two-qubit reduced states for the considered models, and analyse its behaviour across its quantum phase transitions for finite system sizes as well as in the thermodynamic limit by using Bethe ansatz.
arXiv Detail & Related papers (2020-02-05T00:45:21Z) - In and out of equilibrium quantum metrology with mean-field quantum
criticality [68.8204255655161]
We study the influence that collective transition phenomena have on quantum metrological protocols.
The single spherical quantum spin (SQS) serves as stereotypical toy model that allows analytical insights on a mean-field level.
arXiv Detail & Related papers (2020-01-09T19:20:42Z) - Experimental Observation of Equilibrium and Dynamical Quantum Phase
Transitions via Out-of-Time-Ordered Correlators [14.389514788367086]
We report the first experimental observation of EQPTs and DQPTs in a quantum spin chain via quench dynamics of OTOC on a nuclear magnetic resonance quantum simulator.
We demonstrate that the long-time average value of the OTOC in quantum quench signals the equilibrium quantum critical point and ordered quantum phases.
arXiv Detail & Related papers (2019-12-27T09:35:07Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.