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A. James Clark School of Engineering, University of Maryland
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Optically Controlled Phase Gate for Two Spin Qubits in Coupled Quantum Dots
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Flow Control of Small Objects on Chip Manipulating Live Cells, Quantum Dots, and Nanowires
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about Flow Control of Small Objects on Chip Manipulating Live Cells, Quantum Dots, and Nanowires
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Low-Photon-Number Optical Switching with a Single Quantum Dot Coupled to a Photonic Crystal Cavity
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about Low-Photon-Number Optical Switching with a Single Quantum Dot Coupled to a Photonic Crystal Cavity
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All-Optical Tuning of a Quantum Dot in a Coupled Cavity System
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Integrated Optical Memristors
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Low-Noise Quantum Frequency Conversion of Photons from a Trapped Barium Ion to the Telecom O-Band
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about Low-Noise Quantum Frequency Conversion of Photons from a Trapped Barium Ion to the Telecom O-Band
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Routing Single Photons from a Trapped Ion Using a Photonic Integrated Circuit
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The 2023 Terahertz Science and Technology Roadmap
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Dressed-State Control of Effective Dipolar Interaction between Strongly-Coupled Solid-State Spins
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about Dressed-State Control of Effective Dipolar Interaction between Strongly-Coupled Solid-State Spins
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Designing Photonic Materials for Effective Bandgap Modification and Optical Concentration in Photovoltaics
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about Designing Photonic Materials for Effective Bandgap Modification and Optical Concentration in Photovoltaics
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