A Majorana zero mode is a quasiparticle excitation that acts as its own antiparticle, a state predicted to appear at the ends of certain superconducting nanowires and in other engineered materials. Two Majorana zero modes combine into a single fermionic state whose 0 and 1 configurations live in two physically separated places at once, which is the proposed basis for a topological qubit. Because the information is stored non-locally, in how the two modes are paired rather than in any one spot, local noise that would flip an ordinary qubit cannot easily disturb it, which is the entire appeal of topological quantum computing. The difficulty is experimental: for years the field has debated whether measured signatures are genuine Majorana modes or look-alike states, several prominent claims were later retracted, and as of 2026 no group has built a working topological qubit from them. Microsoft is the main commercial effort pursuing this path.
Related Terms
Topological Qubit
HardwareA theorized qubit that encodes information in the braiding of exotic quasiparticles so that errors are suppressed by the qubit's underlying topology rather than corrected after the fact.
Qubit
FundamentalsA qubit (quantum bit) is the basic unit of quantum information. Unlike a classical bit, it uses superposition and entanglement, returning 0 or 1 when measured.
Quantum Error Correction
HardwareTechniques to detect and correct errors in quantum circuits without measuring (and collapsing) the qubits.