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Quantum Information Science I, Part 3

(68 Lectures Available)

S# Lecture Course Institute Instructor Discipline
1
  • A model of distributed quantum computation
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
2
  • A modified distributed Simon's problem with potential for quantum communication speedup
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
3
  • A story of QKD implementations: BB84 vs entanglement-based QKD
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
4
  • Action of unitary transform on density matrices
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
5
  • BB84 QKD: assumptions and real-world issues
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
6
  • BB84 QKD: classical post-processing for noise and privacy amplification
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
7
  • Bloch sphere representation of single qubit density matrix states
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
8
  • Classical communication complexity - distributed partial and total functions
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
9
  • Classical communication complexity for the distributed Deutsch-Jozsa problem
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
10
  • Classical fingerprinting with pre-shared randomness
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
11
  • Classical fingerprinting with UN-shared randomness
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
12
  • Classical linear code error syndromes
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
13
  • Classical linear code minimum Hamming weight
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
14
  • Classical linear codes - dual and self-dual codes
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
15
  • Classical linear error correction code distances
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
16
  • Classical repetition code
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
17
  • Conjugate coding and quantum money
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
18
  • Density matrices and the partial trace - definition
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
19
  • Density matrices and the partial trace - example
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
20
  • Density matrix properties
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
21
  • Determining the error from the syndrome for classical linear codes
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
22
  • Distributed disjointness problem
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
23
  • Distributed quantum algorithm for disjointness problem
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
24
  • Distributed quantum algorithms - overview
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
25
  • Distributed version of Simon's quntum algorithm
Quantum Information Science I, Part 3 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences