Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Quantum Error Correction: Knill-Laflamme Theorem
Graph Chatbot
Related lectures (32)
The Paradigm of Digital Quantum Computation
Introduces the paradigm of digital quantum computation, discussing quantum bits, gates, error correction, and efficiency.
Matrix to Density Operator
Explains the transformation from a matrix to the density operator in quantum physics.
Error Correction
Covers error correction in quantum computing using Hamming codes and syndrome decoding.
Quantum Information: Superdense Coding
Explores superdense coding in quantum information, covering encoding protocols, entanglement, and classic hits in communication.
Quantum Information: Fundamental Experiments
Explores fundamental quantum experiments, including Young's double-slit and photoelectric effect.
Quantum Information and Computing
Covers quantum information, computing, algorithms, error correction, and challenges in the field.
Error Correction: Shor Code
Covers error correction using Shor codes for protection against bit-flip and phase-flip errors.
The Period Finding Algorithm
Explores the Quantum Phase Estimation method for finding the period of a function using an oracle.
Photonic Links for Rydberg Atom Arrays: Quantum Networking
Covers advancements in photonic links for Rydberg atom arrays in quantum networking.
Quantum Information: Polarisation and Degrees of Freedom
Explores quantum polarisation, elasticity, and spatial structure of wave functions.
Quantum Mechanics: Self-adjoint Operators and Quantum Information
Offers a crash course on quantum mechanics, emphasizing self-adjoint operators and quantum information.
Quantum Computing and Error Correction
Explores quantum computing, error correction, quantum gates, and hybrid quantum-classical algorithms.
Previous
Page 2 of 2
Next