IQIS Lecture 8.14 — Seven-qubit code and transversal constructions
IQIS Lecture 8.15 — Fault-tolerant computation and threshold theorems
IQIS Lecture 8.11 — Stabilizers
IQIS Lecture 8.5 — Nine-qubit code
IQIS Lecture 8.13 — Stabilizer codes
IQIS Lecture 8.12 — Normalizers (and centralizers)
IQIS Lecture 3.9 — Universal sets of gates (for multiple qubits)
IQIS Lecture 8.1 — Overview of quantum error correction
IQIS Lecture 6.4 — Phase kick-back
IQIS Lecture 3.10 — Problems with state vectors
2018 - Artur Ekert - Taming Quantum Weirdness
IQIS Lecture 6.3 — Hadamard and quantum Fourier transforms
Section II.1 Reversible Quantum Circuits
Introducing the XP Stabilizer Formalism
Optimal Two-Qubit Circuits for Universal Fault-Tolerant Quantum Computation
Decoding Quantum Random Codes | Qiskit Seminar Series with Yoshifumi Nakata
Demonstration of fault-tolerant universal quantum gate operations,Lukas Postler,Sascha Heussen,#QRST
L29-1 Quantum Error Correction and Shor's 9 qubit Code
L13-2 Electron Spin Qubit Initialization and Readout
Four-dimensional toric code with non-Clifford transversal gates & Locally unencoding the color code
Calderbank-Shor-Steane codes
19: Calderbank-Shor-Steane codes
A New Twist on the Majorana surface code | Qiskit Quantum Seminar with Campbell McLauchlan
Suppressing quantum errors by scaling a surface code logical qubit
Quantum Homomorphic Encryption for Circuits of Low T gate Complexity