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Explore quantum superposition of coherent states, from cat states to quantum computing applications, with experimental realizations in spin systems.
Discover how neutral atom arrays enable quantum processing through cutting-edge research and experimental techniques at the Centre for Quantum Technologies.
Explore quantum key distribution evolution from BB84 to CT23, covering security proofs, device-independent protocols, and the innovative Magic Square Game approach.
Explore bosonic modes for quantum information processing, covering quantum error correction breakthroughs, protected entanglement, and scaling towards distributed quantum computation.
Explore integrability concepts like Yang-Baxter relations, Bethe-Ansatz, and quantum inverse scattering applied to quantum spin, Hubbard model, and Kondo Hamiltonian systems.
Discover how classical encryption methods evolved into quantum cryptography, exploring security principles and breakthrough technologies in data protection.
Explore cutting-edge superconducting nanowire single-photon detectors achieving sub-10 ps timing jitter and 1.5 GHz rates for high-throughput quantum networks and deep space communication.
Dive into quantum physics fundamentals and explore multi-qubit entangled graph states, focusing on breakthrough photonic technology for quantum computation and communication networks.
Discover an innovative approach to quantum state reconstruction using Optimized Reconstruction with Excitation Number Sampling (ORENS) for continuous-variable quantum systems and bosonic modes.
Explore the development of hybrid photonic quantum computing using semiconductor quantum dots, focusing on efficient single photon sources, measurement-based computing approaches, and the potential of combining spin and photonic technologies.
Discover how single-atom counting and noble-gas isotope analysis revolutionizes the dating of ancient water and ice, enabling groundbreaking research in earth science and climate studies.
Explore semiconductor physics from nanoscale to large-scale applications, covering transition metal dichalcogenides, single photon emission, and innovative approaches for green hydrogen production through solar-powered water splitting.
Explore quantum chemistry applications in quantum mechanics with insights on molecular structures, energy calculations, and computational methods.
Dive into the fundamentals of quantum mechanics and qubits in this introductory session from CQT's QCamp for pre-university students.
Explore quantum mechanics fundamentals through electron behavior, atomic structure, and molecular bonding via key experiments like double-slit diffraction and Stern-Gerlach.
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