
edXQuantum computing is no longer theoretical—it's built from silicon, diamond, superconductors, and topological matter. This course moves past abstraction to explore four distinct physical implementations of qubits, then climbs the stack: classical-quantum interfaces, compilers, error-correction, and algorithms like Grover's that actually run. Finish with the quantum internet and its applications.
Core topics:
The basics of four different physical implementations of qubits, the building blocks of a quantum computer: Silicon spin qubits, diamond NV center qubits, superconducting qubits, and topological qubits. ,How best to interface classical control circuitry with a quantum processor. ,Micro-architectures, compilers, and programming languages for a quantum processor. ,Quantum error-correction for fault-tolerant quantum computing. ,Quantum algorithms that can be run on a quantum processor (e.g. Grover's algorithm). ,The quantum internet and its applications.
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Tracking since 1 Aug— not enough history yet to tell you whether today's price is any good. Watch the course and we'll tell you when it drops.
This is what we recorded in US pricing — not every price this course has ever had, and prices differ by country.