
Quantum Hardware
Course Index
28 Lessons · 3 Sections
Master the physical systems powering quantum computers — superconducting qubits, trapped ions, neutral atoms, photonic & topological. IBM, Google, IonQ, QuEra. Covers Google Willow, IBM Heron, benchmarking & 3 Qiskit builds.
28Lessons
3Sections
3Projects
FreeAccess
Section 1Requirements, Superconducting Qubits & Trapped IonsLessons 1–10
Lesson 1
What is Quantum Hardware?
Lesson 2
DiVincenzo Criteria
Lesson 3
Qubit Metrics: Fidelity, Coherence & Volume
Lesson 4
Superconducting Qubits: Architecture
Lesson 5
Josephson Junctions & Transmon Qubits
Lesson 6
Dilution Refrigerators & Cryogenics
Lesson 7
Superconducting Gates: CNOT & ISWAP
Lesson 8
IBM Quantum Hardware: Eagle, Heron & Condor
Lesson 9
Google Sycamore & Willow Architecture
Lesson 10
Trapped Ion Qubits
Section 2Ion Trap Systems, Neutral Atoms, Photonic & AdvancedLessons 11–22
Lesson 11
Trapped Ion Gates: Cirac-Zoller & Molmer-Sorensen
Lesson 12
IonQ & Quantinuum Trapped Ion Systems
Lesson 13
Neutral Atom Qubits & Rydberg Gates
Lesson 14
QuEra & Pasqal Neutral Atom Systems
Lesson 15
Photonic Quantum Computing
Lesson 16
PsiQuantum & Xanadu Photonic Systems
Lesson 17
Silicon Spin Qubits
Lesson 18
Topological Qubits: Microsoft
Lesson 19
Quantum Control Electronics
Lesson 20
Quantum Hardware Benchmarking
Lesson 21
Quantum Volume & CLOPS
Lesson 22
Qubit Connectivity & Topology
Section 3Scaling, Modular Architecture & ProjectsLessons 23–28
