Wyniki wyszukiwania dla: QUANTUM DYNAMICS - MOST Wiedzy

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Wyniki wyszukiwania dla: QUANTUM DYNAMICS

Wyniki wyszukiwania dla: QUANTUM DYNAMICS

  • Sharp transitions in low-number quantum dots Bayesian magnetometry

    Publikacja

    - Scientific Reports - Rok 2016

    We consider Bayesian estimate of static magnetic field, characterized by a prior Gaussian probability distribution, in systems of a few electron quantum dot spins interacting with infinite temperature spin environment via hyperfine interaction. Sudden transitions among optimal states and measurements are observed. Usefulness of measuring occupation levels is shown for all times of the evolution, together with the role of entanglement...

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  • Trade-offs in multiparty Bell-inequality violations in qubit networks

    Publikacja

    - PHYSICAL REVIEW A - Rok 2018

    Two overlapping bipartite binary input Bell inequalities cannot be simultaneously violated as this would contradict the usual no-signalling principle. This property is known as monogamy of Bell inequality violations and generally Bell monogamy relations refer to trade-offs between simultaneous violations of multiple inequalities. It turns out that multipartite Bell inequalities admit weaker forms of monogamies that allow for violations...

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  • Natural Deep Eutectic Solvents as Agents for Improving Solubility, Stability and Delivery of Curcumin

    Publikacja

    - PHARMACEUTICAL RESEARCH - Rok 2019

    Purpose Study on curcumin dissolved in natural deep eutectic solvents (NADES) was aimed at exploiting their beneficial properties as drug carriers. Methods The concentration of dissolved curcumin in NADES was measured. Simulated gastrointestinal fluids were used to determine the concentration of curcumin and quantum chemistry computations were performed for clarifying the origin of curcumin solubility enhancement in NADES. Results NADES...

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  • In vitro biological evaluation of a novel folic acid-targeted receptor quantum dot−β−cyclodextrin carrier for C-2028 unsymmetrical bisacridine in the treatment of human lung and prostate cancers

    Publikacja

    - Pharmacological Reports - Rok 2024

    Traditional small-molecule chemotherapeutics usually do not distinguish tumors from healthy tissues. However, nanotechnology creates nanocarriers that selectively deliver drugs to their site of action. This work is the next step in the development of the quantum dot−β−cyclodextrin−folic acid (QD−β−CD−FA) platform for targeted and selected delivery of C−2028 unsymmetrical bisacridine in cancer therapy.Herein, we report an initial...

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  • Eu2Mg3Bi4: Competing Magnetic Orders on a Buckled Honeycomb Lattice

    Publikacja
    • M. Marshall
    • F. Wang
    • T. Klimczuk
    • R. S. Dissanayaka Mudiyanselage
    • M. Greenblatt
    • D. Walker
    • W. Xie

    - CHEMISTRY OF MATERIALS - Rok 2022

    The honeycomb lattice and its derived variants provide information on modeling and designing quantum magnets. A novel magnetic material, Eu2Mg3Bi4, which stabilizes in a previously unknown buckled honeycomb lattice, was discovered by high-pressure and high-temperature methods. We report here on the synthesis exploration of pure single crystals, structural determination of the buckled honeycomb lattice of europium moments, and experimental observation...

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  • Electrochemistry from first-principles in the grand canonical ensemble

    Publikacja
    • A. Bhandari
    • C. Peng
    • J. Dziedzic
    • L. Anton
    • J. R. Owen
    • D. Kramer
    • C. Skylaris

    - JOURNAL OF CHEMICAL PHYSICS - Rok 2021

    Progress in electrochemical technologies, such as automotive batteries, supercapacitors, and fuel cells, depends greatly on developing improved charged interfaces between electrodes and electrolytes. The rational development of such interfaces can benefit from the atomistic understanding of the materials involved by first-principles quantum mechanical simulations with Density Functional Theory (DFT). However, such simulations are...

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  • Stannates, titanates and tantalates modified with carbon and graphene quantum dots for enhancement of visible-light photocatalytic activity

    Publikacja
    • M. Paszkiewicz-Gawron
    • K. Ewa
    • M. Endo-Kimura
    • J. Zwara
    • A. Pancielejko
    • K. Wang
    • W. Lisowski
    • J. Łuczak
    • A. Zaleska-Medynska
    • E. Grabowska-Musiał

    - APPLIED SURFACE SCIENCE - Rok 2021

    Most efforts in heterogeneous photocatalysis are focused on development of new and stable photoactive materials efficient in degradation of various pollutants under visible-light irradiation. In this regard, the wide-bandgap perovskite semiconductors, i.e., SrTiO3 (titanate), SrSnO3 (stannate) and AgTaO3 (tantalate), were prepared by a solvothermal method, and then modified with carbon quantum dots (CQDs) or graphene quantum dots...

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  • Potential energy surfaces of the low-lying electronic states of the Li+LiCs system

    Ab initio quantum chemistry calculations are performed for the mixed alkali triatomic system. Global minima of the ground and first excited doublet states of the trimer are found and Born-Oppenheimer potential energy surfaces of the Li atom interacting with the LiCs molecule were calculated for these states. The lithium atom is placed at various distances and bond angles from the lithium-caesium dimer. Three-body nonadditive forces...

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  • Jahn-Teller and related conical intersections in the benzene radical cation and the monofluoro derivate

    Publikacja

    - JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM - Rok 2007

    The multi-state multi-mode vibronic interactions in the benzene radical cation and its monofluoro derivative have been investigated theoretically, based on high-level electronic structure calculations for the system parameters and a quantum treatment of the nuclear motion. The available experimental data are well reproduced. The interplay of different vibronic coupling mechanisms is pointed out leading to multiple nonadiabatic...

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  • Inequivalence of entanglement, steering, and Bell nonlocality for general measurements

    Publikacja
    • M. Quintino
    • T. Vértesi
    • D. Cavalcanti
    • R. Augusiak
    • M. Demianowicz
    • A. Acín
    • N. Brunner

    - PHYSICAL REVIEW A - Rok 2015

    Einstein-Podolsky-Rosen steering is a form of inseparability in quantum theory commonly acknowledged to be intermediate between entanglement and Bell nonlocality. However, this statement has so far only been proven for a restricted class of measurements, namely, projective measurements. Here we prove that entanglement, one-way steering, two-way steering, and nonlocality are genuinely different considering general measurements,...

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  • All Nonclassical Correlations Can Be Activated into Distillable Entanglement

    Publikacja
    • M. Piani
    • S. Gharibian
    • G. Adesso
    • J. Calsamigilia
    • P. Horodecki
    • A. Winter

    - PHYSICAL REVIEW LETTERS - Rok 2011

    We devise a protocol in which general nonclassical multipartite correlations produce a physically relevant effect, leading to the creation of bipartite entanglement. In particular, we show that the relative entropy of quantumness, which measures all nonclassical correlations among subsystems of a quantum system, is equivalent to and can be operationally interpreted as the minimum distillable entanglement generated between the system...

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  • Free randomness amplification using bipartite chain correlations

    Publikacja
    • A. Grudka
    • K. Horodecki
    • M. Horodecki
    • P. Horodecki
    • M. Pawłowski
    • R. Ramanathan

    - PHYSICAL REVIEW A - Rok 2014

    A direct analysis of the task of randomness amplification from Santha-Vazirani sources using the violation of the chained Bell inequality is performed in terms of the convex combination of no-signaling boxes required to simulate quantum violation of the inequality. This analysis is used to find the exact threshold value of the initial randomness parameter from which perfect randomness can be extracted in the asymptotic limit of...

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  • Binary-Encounter Model for Direct Ionization of Molecules by Positron-Impact

    Publikacja

    We introduce two models for the computation of direct ionization cross sections by positron impact over a wide range of collision energies. The models are based on the binary-encounter-Bethe model and take into account an extension of the Wannier theory. The cross sections computed with these models show good agreement with experimental data. The extensions improve the agreement between theory and experiment for collision energies...

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  • Entanglement and Nonlocality are Inequivalent for Any Number of Parties

    Publikacja

    - PHYSICAL REVIEW LETTERS - Rok 2015

    Understanding the relation between nonlocality and entanglement is one of the fundamental problems in quantum physics. In the bipartite case, it is known that these two phenomena are inequivalent, as there exist entangled states of two parties that do not violate any Bell inequality. However, except for a single example of an entangled three-qubit state that has a local model, almost nothing is known about such a relation in multipartite...

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  • The influence of anchoring group position in ruthenium dye molecule on performance of dye-sensitized solar cells

    Publikacja
    • M. Zals
    • B. Gierczyk
    • A. Bossi
    • P. R. Mussini
    • M. Klein
    • R. Pankiewicz
    • M. Makowska-janusik
    • Ł. Popenda
    • W. Stampor

    - DYES AND PIGMENTS - Rok 2018

    The effect of anchoring group position and, in consequence, the orientation of the ruthenium dye molecule on titania surface on the performance of dye-sensitized solar cells has been studied intensively. Three model ruthenium sensitizing dyes bearing carboxylic anchoring group in ortho, meta or para position were synthesized and well characterized by spectroscopic, electrochemical, photophysical and photochemical measurements....

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  • Low-energy positron scattering from gas-phase uracil

    Publikacja

    - EUROPEAN PHYSICAL JOURNAL D - Rok 2014

    Quantum scattering calculations are presented for the interaction of low energy positrons with the uracil molecule, an important component of biological systems. The rotational elastic and inelastic cross sections and vibrational inelastic cross sections are reported and compared with existing experiments, indicating a general trend of the cross sections different from the experimental findings and in line with what should be expected...

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  • Amplifying the Randomness of Weak Sources Correlated With Devices

    Publikacja

    - IEEE TRANSACTIONS ON INFORMATION THEORY - Rok 2017

    The problem of device-independent randomness amplification against no-signaling adversaries has so far been studied under the assumption that the weak source of randomness is uncorrelated with the (quantum) devices used in the amplification procedure. In this paper, we relax this assumption, and reconsider the original protocol of Colbeck and Renner using a Santha-Vazirani (SV) source. To do so, we introduce an SV-like condition...

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  • N-doped graphene quantum dot-decorated MOF-derived yolk-shell ZnO/NiO hybrids to boost lithium and sodium ion battery performance

    Publikacja

    - APPLIED SURFACE SCIENCE - Rok 2024

    Surface engineering at the nanoscale to obtain robust interface between metal oxides and quantum dots is essential for improving the performance and stability of battery materials. Herein, we designed and prepared novel N-doped graphene quantum dot-modified ZnO/NiO anode materials with a well-defined yolk-shell structure for lithium and sodium-ion batteries. NG QDs were assembled on the ZnO/NiO microspheres using three different...

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  • Optical and photocatalytic properties of rare earth metal-modified ZnO quantum dots

    Publikacja
    • J. Sowik
    • M. Miodyńska
    • B. Bajorowicz
    • A. Mikolajczyk
    • W. Lisowski
    • T. Klimczuk
    • D. Kaczor
    • A. Zaleska-Medynska
    • A. Malankowska

    - APPLIED SURFACE SCIENCE - Rok 2019

    A series of novel ZnO quantum dots modified with rare earth metals was successfully prepared by a simple sol-gel approach. The effects of types (Eu, Er, Tb, Yb, Ho, La) and amounts (from 0.09 to 0.45 mmol) of lanthanides on the optical properties, structural characterization and photocatalytic activity of ZnO/RE QDs were systematically investigated. The X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier transform...

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  • Entanglement of genuinely entangled subspaces and states: Exact, approximate, and numerical results

    Publikacja

    - PHYSICAL REVIEW A - Rok 2019

    Genuinely entangled subspaces (GESs) are those subspaces of multipartite Hilbert spaces that consist only of genuinely multiparty entangled pure states. They are natural generalizations of the well-known notion of completely entangled subspaces, which by definition are void of fully product vectors. Entangled subspaces are an important tool of quantum information theory as they directly lead to constructions of entangled states,...

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  • Production of singlet oxygen atoms by photodissociation of oxywater

    Publikacja

    - JOURNAL OF CHEMICAL PHYSICS - Rok 2009

    Quantum chemical calculations are reported for the energies of the few lowest electronic singlet states of oxywater along dissociation of the oxygen-oxygen bond into water and singlet oxygen using multistate multireference second-order Møller–Plesset perturbation theory. We compute an energy of 21 kcal/mol to remove one oxygen atom in the lowest singlet state. The two lowest excited singlet states have vertical excitation energies...

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  • Contra Bellum: Bell's Theorem as a Confusion of Languages

    Publikacja

    Bell's theorem is a conflict of mathematical predictions formulated within an infinite hierarchy of mathematical models. Inequalities formulated at level k ∈ Z are violated by probabilities at level k+1. We are inclined to think that k=0 corresponds to the classical world, while k=1 — to the quantum one. However, as the k=0 inequalities are violated by k=1 probabilities, the same relation holds between k=1 inequalities violated...

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  • Predicting the viscosity and electrical conductivity of ionic liquids on the basis of theoretically calculated ionic volumes

    Publikacja

    - MOLECULAR PHYSICS - Rok 2015

    Selected physical properties of the ionic liquids might be quantitatively predicted based on the volumes of the ions these systems are composed of. It is demonstrated that the ionic volumes calculated using relatively simple theoretical quantum chemistry methods can be utilised to estimate the viscosities and electrical conductivities of various commonly used ionic liquids. The fitting formulas of the exponential form are offered...

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  • Weak localization competes with the quantum oscillations in a natural electronic superlattice: The case of Na1.5(PO2)4(WO3)20

    Publikacja
    • K. Kolincio
    • O. Pérez
    • E. Canadell
    • P. Alemany
    • E. Duverger-Nédellec
    • A. Minelli
    • A. Bosak
    • A. Pautrat

    - PHYSICAL REVIEW B - Rok 2020

    We report an investigation of the combined structural and electronic properties of the bronze Na1.5(PO2)4(WO3)20. Its low-dimensional structure and possible large reconstruction of the Fermi surface due to charge density wave instability make this bulk material a natural superlattice with a reduced number of carriers and Fermi energy. Signatures of multilayered two-dimensional (2D) electron weak localization are consequently reported,...

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  • Optical Spectroscopic Studies of Tetrahydrofuran Fragmentation Induced by Collisions with Dihydrogen Cations

    Publikacja

    - ACTA PHYSICA POLONICA A - Rok 2021

    Collisions of dihydrogen cations with tetrahydrofuran molecules have been studied. Luminescence spectra and the emission functions of the excited products at projectile energies ranging from 8 to 1000 eV have been measured using collision-induced emission spectroscopy. The recorded spectra are dominated by the atomic lines of the hydrogen Balmer series, whose intensities decrease more quickly than derived by the quantum-theoretical...

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  • A Note on Fractional Curl Operator

    In this letter, we demonstrate that the fractional curl operator, widely used in electromagnetics since 1998, is essentially a rotation operation of components of the complex Riemann–Silberstein vector representing the electromagnetic field. It occurs that after the wave decomposition into circular polarisations, the standard duality rotation with the angle depending on the fractional order is applied to the left-handed basis vector...

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  • Entanglement-redistribution boxes

    Publikacja

    - PHYSICAL REVIEW A - Rok 2008

    We establish a framework to study the classical-communication properties of primitive local operations assisted by classical communication which realize various redistributions of entanglement, like, e.g., entanglement swapping. On the one hand, we analyze what local operations and how much classical communication are needed to perform them. On the other hand, we investigate whether and to what extent such primitives can help to...

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  • Hydrogen migration in formation of NH(A3Π) radicals via superexcited states in photodissociation of isoxazole molecules

    Publikacja

    - JOURNAL OF CHEMICAL PHYSICS - Rok 2014

    Formation of the excited NH(A 3Π) free radicals in the photodissociation of isoxazole (C3H3NO) molecules has been studied over the 14-22 eV energy range using photon-induced fluorescence spectroscopy. The NH(A 3Π) is produced through excitation of the isoxazole molecules into higher-lying superexcited states. Observation of the NH radical, which is not a structural unit of the isoxazole molecule, corroborates the hydrogen atom...

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  • Sensitivity of entanglement decay of quantum-dot spin qubits to the external magnetic field

    Publikacja

    - PHYSICAL REVIEW A - Rok 2014

    We study the decay of entanglement of quantum-dot electron-spin qubits under hyperfine-interaction-mediated decoherence.We show that two-qubit entanglement of a single entangled initial state may exhibit decay characteristic of two disentanglement regimes in a single sample, when the externalmagnetic field is changed. The transition is manifested by the suppression of time-dependent entanglement oscillations which are superimposed...

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  • Experimental and theoretical studies on the Sulfamethazine-Urea and Sulfamethizole-Urea solid-liquid equilibria

    Publikacja

    - JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY - Rok 2021

    The miscibility of active pharmaceutical ingredients with excipients is an important aspect in pharmaceutical technology protocols. In this study, the differential scanning calorimetry (DSC) was used for Sulfamethazine-Urea (SI–U) and Sulfamethizole-Urea (SO–U) solid-liquid phase diagrams determination. Both sulfonamides form simple binary eutectics with Urea. The lack of new co-crystal phase formation was confirmed by inspection...

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  • Entropy Production Associated with Aggregation into Granules in a Subdiffusive Environment

    Publikacja
    • P. Weber
    • P. Bełdowski
    • M. Bier
    • A. Gadomski

    - ENTROPY - Rok 2018

    We study the entropy production that is associated with the growing or shrinking of a small granule in, for instance, a colloidal suspension or in an aggregating polymer chain. A granule will fluctuate in size when the energy of binding is comparable to k_{B}T, which is the “quantum” of Brownian energy. Especially for polymers, the conformational energy landscape is often rough and has been commonly modeled as being self-similar...

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  • Probing Luminescence in the Collisions of Furan Molecules with Dihydrogen Cations Using Collision-Induced Emission Spectroscopy

    Publikacja

    Optical spectroscopic studies of furan molecules (C4H4O) impinged by dihydrogen cations (H2 +) were for the first time performed employing collision induced emission spectroscopy at ions incident energy range of 25–1000 eV corresponding to the velocities from 49 to 311 km/s. The recorded spectra reveal strong luminescence of atomic hydrogen Balmer lines whose intensities weaken with rising principal quantum number n. The spectra...

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  • Kagome Lattice Promotes Chiral Spin Fluctuations

    Publikacja
    • K. Kolincio
    • M. Hirschberger
    • J. Masell
    • T. Arima
    • N. Nagaosa
    • Y. Tokura

    - PHYSICAL REVIEW LETTERS - Rok 2023

    Dynamical spin fluctuations in magnets can be endowed with a slight bent toward left- or right-handed chirality by Dzyaloshinskii-Moriya interactions. However, little is known about the crucial role of lattice geometry on these chiral spin fluctuations and on fluctuation-related transport anomalies driven by the quantum-mechanical (Berry) phase of conduction electrons. Via thermoelectric Nernst effect and electric Hall effect experiments,...

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  • Fluorescence of p-hydroxyazobenzocrowns – Tautomeric equilibrium effect

    The spectroscopic properties of a series of para-hydroxyazobenzocrowns, including three novel compounds, were investigated using UV–Vis absorption and emission spectroscopy. This study presents, for the first time, determined quantum yield (QY) values for macrocycles of this category, ranging between 0.122 and 0.195. The highest values were obtained for crowns bearing two phenyl substituents in benzene rings. The impact of aromatic...

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  • Multiacces quantum communication and product higher rank numerical range

    Publikacja

    In the present paper we initiate the study of the product higher rank numerical range. The latter, being a variant of the higher rank numerical range, is a natural tool for study- ing a construction of quantum error correction codes for multiple access channels. We review properties of this set and relate it to other numerical ranges, which were recently introduced in the literature. Further, the concept is applied to the construction...

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  • Elimination and migration of hydrogen in the vacuum-ultraviolet photodissociation of pyridine molecules

    Publikacja

    - JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS - Rok 2017

    Elimination of the excited hydrogen atoms H(n), n = 4–7, and hydrogen migration in formation of the excited NH(A 3Π) free radicals in the photodissociation of pyridine, C5H5N, molecules have been studied over the 17.5–70 eV photon energy range. In the measurements the photon-induced fluorescence spectroscopy technique has been applied. Both fragments are produced through excitation of pyridine molecules into higher-lying superexcited...

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  • Positron-electron correlation-polarization potentials for the calculation of positron collisions with atoms and molecules

    Publikacja

    We present correlation-polarization potentials for the calculation of scattering cross sections of positrons with atoms and molecules. The potentials are constructed from a short-range correlation term and a long-range polarization term. For the short-range correlation term we present four different potentials that are derived from multi-component density functionals. For the long-range polarization term we employ a multi-term...

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  • Quantum mechanical which-way experiment with an internal degree of freedom

    Publikacja

    - Nature Communications - Rok 2013

    For a particle travelling through an interferometer, the trade-off between the available which-way information and the interference visibility provides a lucid manifestation of the quantum mechanical wave-particle duality. Here we analyse this relation for a particle possessing an internal degree of freedom such as spin. We quantify the trade-off with a general inequality that paints an unexpectedly intricate picture of wave-particle...

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  • Conjectured strong complementary-correlations tradeoff

    Publikacja
    • A. Grudka
    • M. Horodecki
    • P. Horodecki
    • R. Horodecki
    • W. Kłobus
    • Ł. Pankowski

    - PHYSICAL REVIEW A - Rok 2013

    We conjecture uncertainty relations that restrict correlations between the results of measurements performed by two separate parties on a shared quantum state. The first uncertainty relation bounds the sum of two mutual informations when one party measures a single observable and the other party measures one of two observables. The uncertainty relation does not follow from the Maassen-Uffink uncertainty relation and is much stronger...

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  • Topological, nonreciprocal, and multiresonant slow light beyond the time-bandwidth limit

    Publikacja

    - APPLIED PHYSICS LETTERS - Rok 2021

    Topologically protected transport has recently emerged as an effective means to address a recurring problem hampering the field of slow light for the past two decades: its keen sensitivity to disorders and structural imperfections. With it, there has been renewed interest in efforts to overcome the delay-time-bandwidth limitation usually characterizing slow-light devices, on occasion thought to be a fundamental limit. What exactly...

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  • An approach to constructing genuinely entangled subspaces of maximal dimension

    Publikacja

    Genuinely entangled subspaces (GESs) are the class of completely entangled subspaces that contain only genuinely multiparty entangled states. They constitute a particularly useful notion in the theory of entanglement but also have found an application, for instance, in quantum error correction and cryptography. In a recent study (Demianowicz and Augusiak in Phys Rev A 98:012313, 2018), we have shown how GESs can be efficiently...

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  • Mutually polarizable QM/MM model with in situ optimized localized basis functions

    Publikacja
    • J. Dziedzic
    • T. Head-Gordon
    • M. Head-Gordon
    • C. Skylaris

    - JOURNAL OF CHEMICAL PHYSICS - Rok 2019

    We extend our recently developed quantum-mechanical/molecular mechanics (QM/MM) approach [Dziedzic et al., J. Chem. Phys. 145, 124106 (2016)] to enable in situ optimization of the localized orbitals. The quantum subsystem is described with ONETEP linear-scaling density functional theory and the classical subsystem – with the AMOEBA polarizable force field. The two subsystems interact via multipolar electrostatics and are fully...

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  • Do positrons measure atomic and molecular diameters?

    Publikacja

    - EUROPEAN PHYSICAL JOURNAL D - Rok 2016

    We report on density functional calculations (DFT) of elastic integral scattering cross-sections for positron collisions with argon, krypton, nitrogen and methane. The long-range asymptotic polarization potential is described using higher-order terms going much beyond an induced dipole potential (−α / r 4) while the short-range interaction is modeled by two different forms of electron – positron correlation potential (Boroński-Nieminen...

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  • Stripe order and magnetic anisotropy in the S=1 antiferromagnet BaMoP2O8

    Publikacja
    • J. Hembacher
    • D. Badrtdinov
    • L. Ding
    • Z. Ryżyńska
    • C. Ritter
    • V. Mazurenko
    • A. Tsirlin

    - PHYSICAL REVIEW B - Rok 2018

    Magnetic behavior of yavapaiite-type BaMoP2O8 with the spatially anisotropic triangular arrangement of the S=1Mo4+ ions is explored using thermodynamic measurements, neutron diffraction, and density-functional band-structure calculations. A broad maximum in the magnetic susceptibility around 46 K is followed by the stripe antiferromagnetic order with the propagation vector k=(12,12,12) formed below TN≃21 K. This stripe phase is...

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  • System information propagation for composite structures

    We study in details decoherence process of a spin register, coupled to a spin environment. We use recently developed methods of information transfer study in open quantum systems to analyze information flow between the register and its environment. We show that there are regimes when not only the register decoheres effectively to a classical bit string, but this bit string is redundantly encoded in the environment, making it available...

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  • Cross-Section Calculations for Electron-Impact Ionization of Pyrimidine Molecule and Its Halogenated Derivatives: 2-Chloropyrimidine, 5-Chloropyrimidine, 2-Bromopyrimidine and 5-Bromopyrimidine

    Publikacja

    The total cross-sections for the single electron-impact ionization of pyrimidine (C4H4N2), 2-chloropyrimidine (2-C4H3ClN2), 5-chloropyrimidine (5-C4H3ClN2), 2-bromopyrimidine (2-C4H3BrN2) and 5-bromopyrimidine (5-C4H3BrN2) molecules have been calculated with the binary-encounter-Bethe model from the ionization threshold up to 5 keV. The input data for the BEB calculations concerning electronic structure of the studied targets have...

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  • Ultrahigh Quantum Efficiency Near-Infrared-II Emission Achieved by Cr3+ Clusters to Ni2+ Energy Transfer

    Publikacja
    • C. Chang
    • M. Huang
    • K. Chen
    • W. Huang
    • M. Kamiński
    • N. Majewska
    • T. Klimczuk
    • J. Chen
    • D. Cherng
    • K. Lu... i 5 innych

    - CHEMISTRY OF MATERIALS - Rok 2024

    Increasing demand for near-infrared-II (NIR-II) light sources requires improved NIR-II phosphors. We present a series of phosphors codoped with Cr3+ and Ni2+ that possess NIRII emission with an unprecedented internal quantum efficiency (IQE) of 97.4%. Our study reveals an energy transfer mechanism involving clusters of Cr3+ where luminescent centers are closely matched in energy and where the Ni2+ emission intensity can be tuned...

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  • A study of concentration depolarization and quenching of photoluminescence of solutions

    Publikacja
    • C. Bojarski
    • A. Bujko
    • J. Dudkiewicz
    • J. Kuśba
    • G. Obermüller

    - ACTA PHYSICA POLONICA A - Rok 1974

    The concentration-dependence of emission anisotropy r/r0 and quantum yield eta/eta0 of the photoluminescence of glycerol-water solutions of rhodamine B in two systems of viscosities 7.4 P and 0.72 P is investigated. The experimental data are compared with the new theory of concentraticn depolarization (J. Lumin., 5, 413 (1972)) and concentration quenching of photoluminescence (Acta Phys. Hungar., 30, 145 (1972)), which takes...

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  • 1,3-alternate calix[4]arene-bonded silica stationary phases. Effect of calixarene skeleton substituents on the retention mechanism and column selectivity

    Publikacja

    Four novel 1,3-alternate calix[4]arene-bonded silica gel stationary phases possessing different aromatic and aliphatic substituents at the upper rim (CalixNph, CalixBph, CalixHex and CalixDdc) were prepared and structurally characterized. The comparison and selectivity of these phases was done by using alkylbenzenes, fatty acid p-bromophenacyl esters, aromatic positional isomers and polynuclear aromatic hydrocarbons as analytes....

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  • Inseparability criteria based on matrices of moments

    Publikacja

    - PHYSICAL REVIEW A - Rok 2009

    Inseparability criteria for continuous and discrete bipartite quantum states based on moments of annihilationand creation operators are studied by developing the idea of Shchukin-Vogel criterion Phys. Rev. Lett. 95,230502 2005. If a state is separable, then the corresponding matrix of moments is separable too. Thus, wederive generalized criteria based on the separability properties of the matrix of moments. In particular, acriterion...

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