Lecture

Right Arrow

SEARCH COURSES / LECTURES

Left Arrow

Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity

(93 Lectures Available)

S# Lecture Course Institute Instructor Discipline
76
  • The role of classical error correction in FTQC - measurement
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
77
  • The threshold theorem - proof sketch - level 1
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
78
  • The threshold theorem - proof sketch - recursing
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
79
  • The threshold theorem - statement
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
80
  • The toric code - boundary map
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
81
  • The toric code - definition
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
82
  • The toric code - F2 linear algebra representation of plaquettes and vertices
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
83
  • The toric code - geometric representation of logical X operators
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
84
  • The toric code - geometric representation of logical Z operators
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
85
  • The toric code - logical operators - the normalizer subgroup
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
86
  • The toric code - number of logical qubits encoded
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
87
  • The toric code - perspective
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
88
  • The toric code - stabilizers in terms of F2 algebra
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
89
  • Thoughts on fault-tolerant quantum computation with cluster states
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
90
  • Threshold for quantum computation - fault-tolerant quantum procedures
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
91
  • Thresholds for reliable classical computation
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
92
  • Transversal measurements involved in the T gate construction
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences
93
  • What kind of quantum computer is necessary for quantum supremacy?
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity MIT Prof. Isaac Chuang, Dr. Aram Harrow Basic and Health Sciences