Irreducibly $SU(2)$-covariant quantum channels of low rank
- URL: http://arxiv.org/abs/2105.00709v1
- Date: Mon, 3 May 2021 09:36:22 GMT
- Title: Irreducibly $SU(2)$-covariant quantum channels of low rank
- Authors: Euijung Chang, Jaeyoung Kim, Hyesun Kwak, Hun Hee Lee, Sang-Gyun Youn
- Abstract summary: We prove that PPT property coincides with entanglement-breaking property and that degradability seldomly holds in this class.
In particular, we exhibit a strong form of additivity violation of coherent information, which resembles the superactivation of coherent information of depolarizing channels.
- Score: 4.166845694136599
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We investigate information theoretic properties of low rank (less than or
equal to 3) quantum channels with $SU(2)$-symmetry, where we have a complete
description. We prove that PPT property coincides with entanglement-breaking
property and that degradability seldomly holds in this class. In connection
with these results we will demonstrate how we can compute Holevo and coherent
information of those channels. In particular, we exhibit a strong form of
additivity violation of coherent information, which resembles the
superactivation of coherent information of depolarizing channels.
Related papers
- Mixed-permutation channel with its application to estimate quantum
coherence [4.171080633895958]
We study a class of special quantum channels named the mixed-permutation channels.
The analytical lower bounds for l1-norm coherence and the relative entropy of coherence are shown.
The extension to bipartite systems is presented for the actions of the mixed-permutation channels.
arXiv Detail & Related papers (2024-01-12T00:12:12Z) - Quantum channels that destroy negative conditional entropy [0.0]
This article delves deeply into quantum channels, emphasizing negative conditional entropy breaking channels (NCEB) and introducing negative conditional entropy annihilating channels (NCEA)
We characterize these channels from both topological and information-theoretic perspectives, examining their properties when combined serially and NCEB in parallel.
We lay prescriptions to detect channels that do not break the negativity of conditional entropy, ensuring the conservation of this quantum resource.
arXiv Detail & Related papers (2023-11-27T10:48:15Z) - Weyl channels for multipartite systems [42.37986459997699]
Quantum channels describe unitary and non-unitary evolution of quantum systems.
We show that these channels are completely characterized by elements drawn of finite cyclic groups.
arXiv Detail & Related papers (2023-10-17T02:45:47Z) - Correlation measures of a quantum state and information characteristics
of a quantum channel [0.0]
We discuss the interconnections between basic correlation measures of a bipartite quantum state and basic information characteristics of a quantum channel.
We describe properties of the (unoptimized and optimized) quantum discord in infinite bipartite systems.
arXiv Detail & Related papers (2023-04-11T17:58:13Z) - Bi-PPT channels are entanglement breaking [77.34726150561087]
We show that bi-PPT channels are always entanglement breaking.
We also show that degradable quantum channels staying completely positive under composition with a transposition are entanglement breaking.
arXiv Detail & Related papers (2022-04-04T17:53:38Z) - Efficient Bipartite Entanglement Detection Scheme with a Quantum
Adversarial Solver [89.80359585967642]
Proposal reformulates the bipartite entanglement detection as a two-player zero-sum game completed by parameterized quantum circuits.
We experimentally implement our protocol on a linear optical network and exhibit its effectiveness to accomplish the bipartite entanglement detection for 5-qubit quantum pure states and 2-qubit quantum mixed states.
arXiv Detail & Related papers (2022-03-15T09:46:45Z) - The platypus of the quantum channel zoo [12.4245398967236]
We study a simple, low-dimensional family of quantum channels with exotic quantum information-theoretic features.
We generalize the qutrit channel in two ways, and the resulting channels and their capacities display similarly rich behavior.
arXiv Detail & Related papers (2022-02-16T23:54:07Z) - Detecting positive quantum capacities of quantum channels [9.054540533394926]
A noisy quantum channel can be used to reliably transmit quantum information at a non-zero rate.
This is because it requires computation of the channel's coherent information for an unbounded number of copies of the channel.
We show that a channel's ability to transmit information is intimately connected to the relative sizes of its input, output, and environment spaces.
arXiv Detail & Related papers (2021-05-13T14:26:45Z) - Coherent control and distinguishability of quantum channels via
PBS-diagrams [59.94347858883343]
We introduce a graphical language for coherent control of general quantum channels inspired by practical quantum optical setups involving polarising beam splitters (PBS)
We characterise the observational equivalence of purified channels in various coherent-control contexts, paving the way towards a faithful representation of quantum channels under coherent control.
arXiv Detail & Related papers (2021-03-02T22:56:25Z) - Entanglement and Complexity of Purification in (1+1)-dimensional free
Conformal Field Theories [55.53519491066413]
We find pure states in an enlarged Hilbert space that encode the mixed state of a quantum field theory as a partial trace.
We analyze these quantities for two intervals in the vacuum of free bosonic and Ising conformal field theories.
arXiv Detail & Related papers (2020-09-24T18:00:13Z) - A multiconfigurational study of the negatively charged nitrogen-vacancy
center in diamond [55.58269472099399]
Deep defects in wide band gap semiconductors have emerged as leading qubit candidates for realizing quantum sensing and information applications.
Here we show that unlike single-particle treatments, the multiconfigurational quantum chemistry methods, traditionally reserved for atoms/molecules, accurately describe the many-body characteristics of the electronic states of these defect centers.
arXiv Detail & Related papers (2020-08-24T01:49:54Z)
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.