About the Book
Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 126. Chapters: Quantum computer, Bra-ket notation, Quantum entanglement, Shor's algorithm, Quantum key distribution, No-cloning theorem, Qubit, Quantum teleportation, Holographic principle, Density matrix, Communication complexity, Bell's theorem, Timeline of quantum computing, Quantum LC circuit, Decoherence-free subspaces, Nitrogen-vacancy center, Quantum algorithm, Walter De Brouwer, Quantum cryptography, Bekenstein bound, Multipartite entanglement, Quantum error correction, Trapped ion quantum computer, Waterloo Institute for Nanotechnology, Quantum digital signature, Quantum circuit, Toric code, Phase qubit, Squashed entanglement, D-Wave Systems, Quantum gate, Quantum convolutional code, Quantum programming, Institute for Quantum Computing, Fidelity of quantum states, Quantum t-design, Pockels effect, No-communication theorem, Quantum pseudo-telepathy, Quantum cellular automata, Circuit quantum electrodynamics, Leggett-Garg inequality, Centre for Quantum Technologies, Quantum energy teleportation, Topological quantum computer, Controlled NOT gate, Bures metric, Separable states, Quantum no-deleting theorem, Continuous quantum computation, Flux qubit, Bell state, NOON state, One-way quantum computer, BB84, Dephasing, Quantum game theory, Superdense coding, Kane quantum computer, Weak measurement, LOCC, Systolic freedom, Loss-DiVincenzo quantum computer, Time-bin encoding, Universal quantum simulator, Quantum cloning, Range criterion, Quantum technology, State-merging, Quantum clock, Graph state, Cavity quantum electrodynamics, Quantum lithography, Superconducting quantum computing, Cat state, Purification of quantum state, Qutrit, Reduction criterion, Charge qubit, Quantum bus, Phase factor, Nuclear magnetic resonance quantum computer, Quantum network, Quantum imaging, Leggett inequality, AQUA@home, Gottesman-Knill...