SCCI Digital Library and Forum

MIT

S# Lecture Course Institute Instructor Discipline
5551
The Bennett-Brassard 84 QKD protocol
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5552
Distributed quantum algorithm for disjointness problem
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5553
Quantum channels – simplified: the dephasing channel
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5554
The case of deterministic classical fingerprinting
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5555
Distributed quantum algorithms – overview
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5556
Quantum codes – definition and review
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5557
Distributed version of Simon's quntum algorithm
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5558
Quantum error correction criteria
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5559
Quantum fingerprinting protocol
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5560
The dephasing channel as depicted on the Bloch sphere
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5561
Quantum state equality testing: the swap test
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5562
The depolarizing channel
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5563
Quantum version of the classical repetition code – three qubit bit flip code
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5564
The distributed Deutsch-Jozsa algorithm
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5565
Remote Deutsch-Jozsa oracle construction
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5566
The distributed Deutsch-Jozsa problem
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5567
Review: classical and quantum coding
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5568
The Ekert-Chao-Lo entanglement-based QKD protocol
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5569
The nine-qubit quantum error correction code
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5570
Simulating a single quantum computer with two distributed halves
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5571
The parity check matrix H
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5572
The role of density matrices in the phase estimation algorithm
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5573
The secure BB84 protocol – BB84 in terms of CSS codes
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5574
The Shor-Preskill proof of security of QKD: Step 1 – random CSS codes
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5575
The Shor-Preskill proof of security of QKD: Step 2 – no quantum computer needed
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences