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  • World Scientific Pub Co Pte Ltd  (16)
  • 1
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2008
    In:  Open Systems & Information Dynamics Vol. 15, No. 04 ( 2008-12), p. 329-343
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 15, No. 04 ( 2008-12), p. 329-343
    Abstract: We define and investigate the notion of entropy for quantum error correcting codes. The entropy of a code for a given quantum channel has a number of equivalent realisations, such as through the coefficients associated with the Knill-Laflamme conditions and the entropy exchange computed with respect to any initial state supported on the code. In general the entropy of a code can be viewed as a measure of how close it is to the minimal entropy case, which is given by unitarily correctable codes (including decoherence-free subspaces), or the maximal entropy case, which from dynamical Choi matrix considerations corresponds to non-degenerate codes. We consider several examples, including a detailed analysis of the case of binary unitary channels, and we discuss an extension of the entropy to operator quantum error correcting subsystem codes.
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2008
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 2
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2016
    In:  Open Systems & Information Dynamics Vol. 23, No. 03 ( 2016-09), p. 1650014-
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 23, No. 03 ( 2016-09), p. 1650014-
    Abstract: Selfcomplementary quantum channels are characterized by such an interaction between the principal quantum system and the environment that leads to the same output states of both interacting systems. These maps can describe approximate quantum copy machines, as perfect copying of an unknown quantum state is not possible due to the celebrated no-cloning theorem. We provide here a parametrization of a large class of selfcomplementary channels and analyze their properties. Selfcomplementary channels preserve some residual coherences and residual entanglement. Investigating some measures of non-Markovianity, we show that time evolution under selfcomplementary channels is highly non-Markovian.
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2016
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 3
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2018
    In:  Open Systems & Information Dynamics Vol. 25, No. 02 ( 2018-06), p. 1877001-
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 25, No. 02 ( 2018-06), p. 1877001-
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2018
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 4
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2020
    In:  Open Systems & Information Dynamics Vol. 27, No. 02 ( 2020-06), p. 2080001-
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 27, No. 02 ( 2020-06), p. 2080001-
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2020
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 5
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2021
    In:  Open Systems & Information Dynamics Vol. 28, No. 04 ( 2021-12)
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 28, No. 04 ( 2021-12)
    Abstract: Some achievements of the late Andrzej Kossakowski in the field of statistical physics and quantum theory are presented. We recall also his attempt to find an analytical solution of the 3-dimensional Ising model.
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2021
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 6
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2023
    In:  Open Systems & Information Dynamics Vol. 30, No. 02 ( 2023-06)
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 30, No. 02 ( 2023-06)
    Abstract: We introduce different ensembles of random Lindblad operators [Formula: see text], which satisfy quantum detailed balance condition with respect to given stationary state [Formula: see text] of size [Formula: see text], and investigate their spectral properties. Such operators are known as ‘Davies generators’ and their eigenvalues are real; however, their spectral densities depend on [Formula: see text] . We propose different structured ensembles of random matrices, which allow us to tackle the problem analytically in the extreme cases of Davies generators corresponding to random [Formula: see text] with a nondegenerate spectrum or the maximally mixed stationary state, [Formula: see text] . Interestingly, in the latter case the density can be reasonably well approximated by integrating out the imaginary component of the spectral density characteristic to the ensemble of random unconstrained Lindblad operators. The case of asymptotic states with partially degenerated spectra is also addressed. Finally, we demonstrate that similar universal properties hold for the detailed balance-obeying Kolmogorov generators obtained by applying superdecoherence to an ensemble of random Davies generators. In this way we construct an ensemble of random classical generators with imposed detailed balance condition.
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2023
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 7
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2011
    In:  International Journal of Quantum Information Vol. 09, No. 04 ( 2011-06), p. 1031-1045
    In: International Journal of Quantum Information, World Scientific Pub Co Pte Ltd, Vol. 09, No. 04 ( 2011-06), p. 1031-1045
    Abstract: We investigate decoherence induced by a quantum channel in terms of minimal output entropy and map entropy. The latter is the von Neumann entropy of the Jamiołkowski state of the channel. Both quantities admit q-Renyi versions. We prove additivity of the map entropy for all q. For the case q = 2, we show that the depolarizing channel has the smallest map entropy among all channels with a given minimal output Renyi entropy of order two. This allows us to characterize pairs of channels such that the output entropy of their tensor product acting on a maximally entangled input state is larger than the sum of the minimal output entropies of the individual channels. We conjecture that for any channel Φ 1 acting on a finite dimensional system, there exists a class of channels Φ 2 sufficiently close to a unitary map such that additivity of minimal output entropy for Ψ 1 ⊗ Ψ 2 holds.
    Type of Medium: Online Resource
    ISSN: 0219-7499 , 1793-6918
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2011
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  • 8
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2019
    In:  International Journal of Quantum Information Vol. 17, No. 05 ( 2019-08), p. 1950046-
    In: International Journal of Quantum Information, World Scientific Pub Co Pte Ltd, Vol. 17, No. 05 ( 2019-08), p. 1950046-
    Abstract: The entropy of a quantum operation, defined as the von Neumann entropy of the corresponding Choi–Jamiołkowski state, characterizes the coupling of the principal system with the environment. For any quantum channel acting on a state of a given size, one defines the complementary channel, which sends the input state into the state of the environment after the operation. Making use of subadditivity of entropy, we show that for any dimension the sum of both entropies is bounded from below. This result characterizes the trade-off between the information on the initial quantum state accessible to the principal system and the information leaking to the environment. For one qubit maps we describe the interpolating family of depolarizing maps, for which the sum of both entropies gives the lower boundary of the region allowed in the space spanned by both entropies.
    Type of Medium: Online Resource
    ISSN: 0219-7499 , 1793-6918
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2019
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  • 9
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2004
    In:  Open Systems & Information Dynamics Vol. 11, No. 01 ( 2004-03), p. 3-42
    In: Open Systems & Information Dynamics, World Scientific Pub Co Pte Ltd, Vol. 11, No. 01 ( 2004-03), p. 3-42
    Abstract: We investigate the space of quantum operations, as well as the larger space of maps which are positive, but not completely positive. A constructive criterion for decomposability is presented. A certain class of unistochastic operations, determined by unitary matrices of extended dimensionality, is defined and analyzed. Using the concept of the dynamical matrix and the Jamiołkowski isomorphism we explore the relation between the set of quantum operations (dynamics) and the set of density matrices acting on an extended Hilbert space (kinematics). An analogous relation is established between the classical maps and an extended space of the discrete probability distributions.
    Type of Medium: Online Resource
    ISSN: 1230-1612 , 1793-7191
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2004
    detail.hit.zdb_id: 2008114-5
    SSG: 11
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  • 10
    Online Resource
    Online Resource
    World Scientific Pub Co Pte Ltd ; 2010
    In:  International Journal of Quantum Information Vol. 08, No. 04 ( 2010-06), p. 535-640
    In: International Journal of Quantum Information, World Scientific Pub Co Pte Ltd, Vol. 08, No. 04 ( 2010-06), p. 535-640
    Abstract: Mutually unbiased bases for quantum degrees of freedom are central to all theoretical investigations and practical exploitations of complementary properties. Much is known about mutually unbiased bases, but there are also a fair number of important questions that have not been answered in full as yet. In particular, one can find maximal sets of N + 1 mutually unbiased bases in Hilbert spaces of prime-power dimension N = p M , with p prime and M a positive integer, and there is a continuum of mutually unbiased bases for a continuous degree of freedom, such as motion along a line. But not a single example of a maximal set is known if the dimension is another composite number (N = 6, 10, 12,…). In this review, we present a unified approach in which the basis states are labeled by numbers 0, 1, 2, …, N - 1 that are both elements of a Galois field and ordinary integers. This dual nature permits a compact systematic construction of maximal sets of mutually unbiased bases when they are known to exist but throws no light on the open existence problem in other cases. We show how to use the thus constructed mutually unbiased bases in quantum-informatics applications, including dense coding, teleportation, entanglement swapping, covariant cloning, and state tomography, all of which rely on an explicit set of maximally entangled states (generalizations of the familiar two–q-bit Bell states) that are related to the mutually unbiased bases. There is a link to the mathematics of finite affine planes. We also exploit the one-to-one correspondence between unbiased bases and the complex Hadamard matrices that turn the bases into each other. The ultimate hope, not yet fulfilled, is that open questions about mutually unbiased bases can be related to open questions about Hadamard matrices or affine planes, in particular the notorious existence problem for dimensions that are not a power of a prime. The Hadamard-matrix approach is instrumental in the very recent advance, surveyed here, of our understanding of the N = 6 situation. All evidence indicates that a maximal set of seven mutually unbiased bases does not exist — one can find no more than three pairwise unbiased bases — although there is currently no clear-cut demonstration of the case.
    Type of Medium: Online Resource
    ISSN: 0219-7499 , 1793-6918
    Language: English
    Publisher: World Scientific Pub Co Pte Ltd
    Publication Date: 2010
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