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Dissipative Landau-Zener tunneling in the crossover regime from weak to strong environment coupling
Published 2025-01-01Get full text
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Observation of quantum temporal correlations well beyond Lüders bound
Published 2025-01-01“…The ability of achieving strong quantum spatial correlations has helped the emergence of quantum information science. In contrast, how to achieve strong quantum temporal correlations (QTCs) has remained as a long-standing challenge, thus hindering their applications in time-domain quantum control. …”
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Quantum Entanglement: Separability, Measure, Fidelity of Teleportation, and Distillation
Published 2010-01-01“…Quantum entangled states have become the key ingredient in the rapidly expanding field of quantum information science. Although the nonclassical nature of entanglement has been recognized for many years, considerable efforts have been taken to understand and characterize its properties recently. …”
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Decoherence-enabled unconditional strongly sub-Poissonian squeezing
Published 2025-01-01“…This excludes the use of the paradigm that the good insulation of a quantum system from its surrounding environment is highly desirable to explore its quantum property and fuel the growth of quantum information science. The interactions with the atom make no contribution to the preparation of squeezed light. …”
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Generation of Massively Entangled Bright States of Light during Harmonic Generation in Resonant Media
Published 2025-02-01“…Our analysis opens remarkable opportunities at the interface of attosecond physics and quantum optics, with implications for quantum information science.…”
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Second quantum revolution: The progressive design of an approach to value its cultural and conceptual scope
Published 2025-01-01“…[This paper is part of the Focused Collection in Investigating and Improving Quantum Education through Research.] Quantum information science and technology is a growing field. …”
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Simulating non-completely positive actions via exponentiation of Hermitian-preserving maps
Published 2024-12-01“…Yet, non-completely positive maps, especially Hermitian-preserving maps, play a crucial role in quantum information science. Here, we introduce the Hermitian-preserving map exponentiation algorithm, which can effectively simulate the action of an arbitrary Hermitian-preserving map by exponentiating its output, $${\mathcal{N}}(\rho )$$ N ( ρ ) , into a quantum process, $${e}^{-i{\mathcal{N}}(\rho )t}$$ e − i N ( ρ ) t . …”
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Quantum Key Distribution Applicability to Smart Grid Cybersecurity Systems
Published 2025-01-01“…However, with the increasing number of sophisticated attacks as well as the increasing computational power, the security of the “classical” cryptographic algorithms is threatened. Quantum information science offers solutions to this problem, specifically quantum key distribution (QKD), which provides a means for the generation and secure distribution of symmetric cryptographic keys. …”
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Phononic modulation of spin-lattice relaxation in molecular qubit frameworks
Published 2024-12-01“…Abstract The solid-state integration of molecular electron spin qubits could promote the advancement of molecular quantum information science. With highly ordered structures and rational designability, microporous framework materials offer ideal matrices to host qubits. …”
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Large‐Area Bright Emission of Plasmon‐Coupled Dark Excitons at Room Temperature
Published 2025-01-01“…Abstract Brightening dark excitons in transition metal dichalcogenide monolayers (MLs) can provide large‐area ultrathin devices for applications in quantum information science and optoelectronics. For practical applications of dark excitons, a robust and bright emission over a wide area at room temperature is desirable; however, no reliable approach has been demonstrated thus far. …”
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Information Theoretical Analysis of Quantum Mixedness in a Finite Model of Interacting Fermions
Published 2025-01-01“…Our findings illuminate the intricate dynamics of the degree of mixedness, a crucial quantum property, with potential implications for diverse fields ranging from condensed matter physics to quantum information science.…”
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Advances and applications on non-Hermitian topological photonics
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Author Correction: Snapshotting quantum dynamics at multiple time points
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Mitigating errors in analog quantum simulation by Hamiltonian reshaping or Hamiltonian rescaling
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Observation of multiple steady states with engineered dissipation
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Direct observation of chiral edge current at zero magnetic field in a magnetic topological insulator
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