Lecture

Right Arrow

SEARCH COURSES / LECTURES

Left Arrow

Quantum Information Science I, Part 1

(55 Lectures Available)

S# Lecture Course Institute Instructor Discipline
26
  • Models for classical computation
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
27
  • Multi-qubit tensor product operations: cautionary note
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
28
  • Physical and conceptual models of classical computation
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
29
  • Physical examples of quantum states
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
30
  • Properties of unitary and Hermitian matrices
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
31
  • Quantum and classical computing fundamentals 
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
32
  • Quantum gate identities: CNOT
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
33
  • Quantum gate identities: Hadamard gates
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
34
  • Quantum protocol demonstrating EPR violation - analysis
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
35
  • Quantum protocol demonstrating EPR violation - setup
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
36
  • Quantum states and the Bloch sphere - quick recap
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
37
  • Reversible computation and the billiard ball model
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
38
  • Reversible gates and circuits
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
39
  • Rotating the Bloch sphere - Pauli matrices
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
40
  • Single-qubit rotation operators
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
41
  • Spin observable along arbitrary axis on Bloch sphere
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
42
  • Szilard's engine and Landauer's exorcism of Maxwell's Daemon
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
43
  • Tensor products and separable quantum states
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
44
  • Tensor products of matrices
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
45
  • Tensor products of vectors - brief recap
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
46
  • The Bloch sphere representation of qubit states
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
47
  • The Copenhagen interpretation of quantum mechanics
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
48
  • The four Bell states and their expected total spin values
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
49
  • The no-cloning theorem
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences
50
  • Thermodynamics and computation - Maxwell's Daemon
Quantum Information Science I, Part 1 MIT Prof. Isaac Chuang, Prof. Peter Shor Basic and Health Sciences