Discrete and generalized phase space techniques in critical quantum spin chains
arXiv:1901.09164 · doi:10.1016/j.physleta.2019.125932
Abstract
We apply the Wigner function formalism from quantum optics via two approaches, Wootters' discrete Wigner function and the generalized Wigner function, to detect quantum phase transitions in critical spin- systems. We develop a general formula relating the phase space techniques and the thermodynamical quantities of spin models, which we apply to single, bipartite and multi-partite systems governed by the and the models. Our approach allows us to introduce a novel way to represent, detect, and distinguish first-, second- and infinite-order quantum phase transitions. Furthermore, we show that the factorization phenomena of the model is only directly detectable by quantities based on the square root of the bipartite reduced density matrix. We establish that phase space techniques provide a simple, experimentally promising tool in the study of many-body systems and we discuss their relation with measures of quantum correlations and quantum coherence.
v2: title change and analysis substantially revised and expanded
References in corpus (18)
- The NumPy array: a structure for efficient numerical computation
- QuTiP 2: A Python framework for the dynamics of open quantum systems
- Quantum Phase Transitions and Bipartite Entanglement
- Quantum discord and quantum phase transition in spin chains
- Quantum coherence and uncertainty in the anisotropic XY chain
- Many-Body Quantum Spin Dynamics with Monte Carlo Trajectories on a Discrete Phase Space
- The renormalization of entanglement in the anisotropic Heisenberg (XXZ) model
- Quenches near Ising quantum criticality as a challenge for artificial neural networks
- Global quantum correlations in finite-size spin chains
- Factorization and Criticality in the Anisotropic XY Chain via Correlations
- Criticality revealed through quench dynamics the Lipkin-Meshkov-Glick model
- Dynamics of correlations in two-dimensional quantum spin models with long-range interactions: A phase-space Monte-Carlo study
- Scaling of tripartite entanglement at impurity quantum phase transitions
- Ground-state factorization and quantum phase transition in dimerized spin chains
- Magnetic quantum correlation in the 1D transverse-field XXZ model
- Quenches near criticality of the quantum Ising chain---power and limitations of the discrete truncated Wigner approximation
- Long range quantum coherence, quantum & classical correlations in Heisenberg XX chain
- Nonclassicality and criticality in symmetry-protected magnetic phases
Cited by in corpus (4)
- Signatures of excited state quantum phase transitions in quantum many body systems: Phase space analysis
- Generalized Phase-Space Techniques to Explore Quantum Phase Transitions in Critical Quantum Spin Systems
- Finite temperature detection of quantum critical points via internal quantum teleportation
- Navigating the phase diagram of quantum many-body systems in phase space