„Qubits“
Suchergebnisse
1.000+ Treffer
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Integration of Cobalt Ferromagnetic Control Gates for Electrical and Magnetic Manipulation of Semiconductor Quantum Dots (Adv. Funct. Mater. 14/2025)
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Integration of Through‐Sapphire Substrate Machining with Superconducting Quantum Processors (Adv. Mater. 9/2025)
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Front Cover: Enhanced Quantum Entanglement Detection of General Two Qubits Systems Based on Modified CNN‐BiLSTM Model (Adv. Quantum Technol. 1/2025)
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Trace norm quantum discord for two qubits: the complete solution revisited and applications
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Materials Innovations for Quantum Technology Acceleration: A Perspective (Adv. Mater. 27/2023)
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Jellybean Quantum Dots in Silicon for Qubit Coupling and On‐Chip Quantum Chemistry (Adv. Mater. 19/2023)
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Back Cover: Toward Valley‐Coupled Spin Qubits (Adv. Quantum Technol. 6/2020)
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Nanowires: Site‐Controlled Uniform Ge/Si Hut Wires with Electrically Tunable Spin–Orbit Coupling (Adv. Mater. 16/2020)
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Quantum Computing: Exploiting a Single‐Crystal Environment to Minimize the Charge Noise on Qubits in Silicon (Adv. Mater. 40/2020)
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The Use of Exchange Coupled Atom Qubits as Atomic‐Scale Magnetic Field Sensors (Adv. Mater. 6/2023)
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Cover Feature:Emergence of Spinmerism for Molecular Spin‐Qubits Generation (ChemPhysChem 2/2023)
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Frontispiece: Deconvolving Contributions to Decoherence in Molecular Electron Spin Qubits: A Dynamic Ligand Field Approach
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Efficient creation of dipolar coupled nitrogen-vacancy spin qubits in diamond
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Electrically Controlled Eight‐Spin‐Qubit Entangled‐State Generation in a Molecular Break Junction
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g ‐Engineering in Hybrid Rotaxanes To Create AB and AB 2 Electron Spin Systems: EPR Spectroscopic Studies of Weak Interactions between Dissimilar Electron Spin Qubits
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g ‐Engineering in Hybrid Rotaxanes To Create AB and AB 2 Electron Spin Systems: EPR Spectroscopic Studies of Weak Interactions between Dissimilar Electron Spin Qubits
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Hybrid Organic–Inorganic Rotaxanes, Including a Hetero‐Hybrid (3) Rotaxane Featuring Two Distinct Heterometallic Rings and a Molecular Shuttle
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Coherence Time Analysis in Semiconducting Hybrid Qubit under Realistic Experimental Conditions
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Hybrid Organic–Inorganic Rotaxanes, Including a Hetero‐Hybrid (3) Rotaxane Featuring Two Distinct Heterometallic Rings and a Molecular Shuttle
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Blatter‐Radical‐Grafted Mesoporous Silica as Prospective Nanoplatform for Spin Manipulation at Ambient Conditions