| S# |
Lecture |
Course |
Institute |
Instructor |
Discipline |
| 5876 |
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
|
| 5877 |
The quest towards complex quantum capabilities
|
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5878 |
The relationship of BQP and BPP: a taste of 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
|
| 5879 |
The relationship of BQP and BPP: quantum vs classical complexity
|
Quantum Information Science II, Part 2 - Efficient Quantum Computing - fault tolerance and complexity
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5880 |
A quick application of Fourier transform: quantum phase estimation
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5881 |
Abelian groups: decomposition into group of characters
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5882 |
Abelian groups: isomorphism to products of cyclic groups
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5883 |
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5884 |
Amplitude amplification – comments
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5885 |
Application – rejection sampling and Gibbs sampling
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5886 |
Models of quantum algorithms
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5887 |
Mutual information – definition and examples
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5888 |
Application of the dihedral group HSP – the hidden shift problem
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5889 |
Application to lattice problems – quantum dihedral HSP
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5890 |
Mutual information – in terms of conditional entropy
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5891 |
Mutual information – the binary symmetric channel
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5892 |
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5893 |
Mutual information example – the binary symmetric channel
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5894 |
Conditional mutual information
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5895 |
Noisy coding theorem – achievability proof
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5896 |
Converse of the noiseless coding theorem
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5897 |
Noisy coding theorem – achievability proof – joint typicality claim
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5898 |
Quantum entropies: conditional entropy issues
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5899 |
Data processing inequality
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|
| 5900 |
Quantum entropies: von Neumann entropy and relative entropy
|
Quantum Information Science II, Part 3 - Advanced quantum algorithms and information theory
|
MIT
|
Prof. Isaac Chuang, Dr. Aram Harrow
|
Basic and Health Sciences
|