Dynamics of single-mode nonclassicalities and quantum correlations in
the Jaynes-Cummings model
- URL: http://arxiv.org/abs/2203.04119v1
- Date: Tue, 8 Mar 2022 14:44:06 GMT
- Title: Dynamics of single-mode nonclassicalities and quantum correlations in
the Jaynes-Cummings model
- Authors: Sriram Akella, Kishore Thapliyal, H S Mani, Anirban Pathak
- Abstract summary: Dynamics of atom-field correlations and single-mode nonclassicalities present in the resonant Jaynes-Cummings model are investigated.
Study has revealed the interplay between three different types of nonclassicality present in the model.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Dynamics of atom-field correlations and single-mode nonclassicalities present
in the resonant Jaynes-Cummings model are investigated using negativity and
entanglement potential for a set of initial states. The study has revealed the
interplay between three different types of nonclassicality present in the model
and established that the nonclassicality is continuously exchanged between the
field and atom through the atom-field correlations. Further, it is observed
that the entanglement potential does not capture all the single-mode
nonclassicality and there exists some residual nonclassicality in the reduced
single-mode states at the output of the beam splitter which is not captured by
the entanglement in which single-mode nonclassicality is quantitatively mapped
in Asboth's criterion. Additional layers of beam splitters are added to deplete
all the nonclassicality and to reveal that almost all the residual
nonclassicality is captured with three layers of beam splitters. Further, the
reduced states of the atom and field have zero (non-zero) quantum coherence in
the Fock basis when the atom-field correlations are maximum if the field (or
atom) has zero (non-zero) quantum coherence initially.
Related papers
- Quantum correlations, mixed states and bistability at the onset of lasing [0.0]
We derive a model for a single mode laser that includes all two particle quantum correlations between photons and electrons.
We find that lasing takes place in the presence of quantum bistability between a non-lasing and a non-classical coherent state.
arXiv Detail & Related papers (2024-10-01T11:18:57Z) - Quantum Non-classicality from Causal Data Fusion [0.8437187555622164]
Bell's theorem shows that quantum correlations are incompatible with a classical theory of cause and effect.
We investigate the problem of causal data fusion that aims to piece together data tables collected under heterogeneous conditions.
We demonstrate the existence of quantum non-classicality resulting from data fusion, even in scenarios where achieving standard Bell non-classicality is impossible.
arXiv Detail & Related papers (2024-05-29T16:35:59Z) - Classical-Nonclassical Polarity of Gaussian States [0.0]
Nonclassical properties such as squeezing and entanglement serve as crucial resources for quantum information processing.
We introduce a unified quantifying: the 'classical-nonclassical polarity', represented by $mathcalP$.
For any pure multi-mode Gaussian state, the total classical-nonclassical polarity equals the sum of the mean photon number from single-mode squeezing and two-mode squeezing.
arXiv Detail & Related papers (2023-10-18T16:46:51Z) - Dilute neutron star matter from neural-network quantum states [58.720142291102135]
Low-density neutron matter is characterized by the formation of Cooper pairs and the onset of superfluidity.
We model this density regime by capitalizing on the expressivity of the hidden-nucleon neural-network quantum states combined with variational Monte Carlo and reconfiguration techniques.
arXiv Detail & Related papers (2022-12-08T17:55:25Z) - Correlated steady states and Raman lasing in continuously pumped and
probed atomic ensembles [68.8204255655161]
We consider an ensemble of Alkali atoms that are continuously optically pumped and probed.
Due to the collective scattering of photons at large optical depth, the steady state of atoms does not correspond to an uncorrelated tensor-product state.
We find and characterize regimes of Raman lasing, akin to the model of a superradiant laser.
arXiv Detail & Related papers (2022-05-10T06:54:54Z) - Non-Gaussian superradiant transition via three-body ultrastrong coupling [62.997667081978825]
We introduce a class of quantum optical Hamiltonian characterized by three-body couplings.
We propose a circuit-QED scheme based on state-of-the-art technology that implements the considered model.
arXiv Detail & Related papers (2022-04-07T15:39:21Z) - Hyper-entangling mesoscopic bound states [0.0]
We show that the post-collision state will be hyper-entangled in spatial degrees of freedom and atom number within solitons.
Results are based on simulations of colliding quantum solitons in a quintic interaction model beyond the mean-field.
arXiv Detail & Related papers (2022-02-12T18:28:43Z) - Non-equilibrium stationary states of quantum non-Hermitian lattice
models [68.8204255655161]
We show how generic non-Hermitian tight-binding lattice models can be realized in an unconditional, quantum-mechanically consistent manner.
We focus on the quantum steady states of such models for both fermionic and bosonic systems.
arXiv Detail & Related papers (2021-03-02T18:56:44Z) - Localization of Rung Pairs in Hard-core Bose-Hubbard Ladder [13.46516066673]
We study the rung-pair localization of the Bose-Hubbard ladder model without quenched disorder.
In the hard-core limit, there exists a rung-pair localization both at the edges and in the bulk.
Our results reveal another interesting type of disorder-free localization related to a zero-energy flat band.
arXiv Detail & Related papers (2020-05-18T08:40:40Z) - Relating the Entanglement and Optical Nonclassicality of Multimode
States of a Bosonic Quantum Field [0.0]
We provide bounds relating entanglement measures with optical nonclassicality measures.
We infer strong bounds on the entanglement that can be produced with an optically nonclassical state impinging on a beam splitter.
arXiv Detail & Related papers (2020-04-24T14:44:02Z) - Non-reciprocal Cavity Polariton with Atoms Strongly Coupled to Optical
Cavity [21.013802417752025]
We experimentally demonstrate a chiral cavity QED system with multiple atoms strongly coupled to a Fabry-Perot cavity.
By polarizing the internal quantum state of the atoms, the time-reversal symmetry of the atom-cavity interaction is broken.
The strongly coupled atom-cavity system can be described by non-reciprocal quasiparticles, i.e., the cavity polariton.
arXiv Detail & Related papers (2019-11-23T02:32:21Z)
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.