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Quantum Computing Paradigm
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Related lectures (58)
Quantum Metrology: Superconducting Electronics & Qubits
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Explores quantum metrology, superconducting electronics, detectors, qubits, and quantum supremacy, emphasizing advancements in quantum computing.
Fault Tolerance
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Covers the concept of fault tolerance in quantum computing and the implementation of error correction codes.
Quantum Gates: C-NOT and Toffoli
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Covers the principles behind quantum gates, focusing on the C-NOT and Toffoli gates.
Shor's Algorithm: Quantum Circuit & Period Finding
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Covers Shor's algorithm for period finding in quantum computing, explaining the quantum circuit and algorithm used.
Quantum Principles
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Covers the fundamental principles of quantum computing and unitary evolution in quantum systems.
Germanium Quantum Technology
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Delves into the use of germanium in quantum computing, emphasizing hole-based quantum systems and materials advancements.
Quantum and Nanocomputing
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Explores the fundamentals and history of quantum computing, including qubit realization and the first and second quantum revolutions.
Quantum Metrology: Superconducting Devices and Qubits
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Explores quantum metrology, superconducting devices, qubits, and quantum computing principles.
Quantum and nanocomputing
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Explores quantum computing fundamentals, qubit realization, control, scalable quantum computers, and spin qubits.
Quantum Supremacy: Introduction
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Introduces Quantum Supremacy, covering Google's 2019 achievement with 60 qubits and exploring quantum information and error correction.
Quantum Fourier Transform and Phase Estimation
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Explores Quantum Fourier Transform and Phase Estimation in quantum computing, focusing on eigenvectors, unitary operations, and computational tasks.
Coupling Capacitive: Two Qubits Interaction
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Covers the capacitive coupling of two qubits and its implications in quantum mechanics.
Quantum and Nanocomputing
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Delves into quantum computing fundamentals, including entanglement, quantum gates, and algorithms, emphasizing unitary transformations and quantum coherence.
Quantum and Nanocomputing: Qubit Realization & Control
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Covers the design, control, and readout of superconducting qubits.
Shor Algorithm: Quantum Circuit Analysis
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Explores the Shor algorithm's quantum circuit analysis and the Quantum Fourier Transform application.
Fault Tolerance: Stabilizer Formalism
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Covers the stabilizer formalism and fault tolerance in quantum error correction.
Quantum Technologies Overview
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Covers quantum computing, simulation, sensing, and communications, highlighting EPFL's role in quantum science and engineering.
Quantum and Nanocomputing
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Covers quantum wire analysis, transmission function, and tunneling in dots.
Quantum and Nanocomputing
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Explores Cryo-CMOS components, quantum computing stack, amplifier performance, noise specifications, and impedance matching in electronic circuits.
Quantum Error Correction: Knill-Laflamme Theorem
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Explores the Knill-Laflamme theorem in quantum error correction and its importance in quantum computing.
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