Papers › The Heisenberg Representation of Quantum Computers

The Heisenberg Representation of Quantum Computers

1 Jul 1998arXiv:quant-ph/9807006links table onlyarchive 2025-07-28

Daniel Gottesman

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Since Shor's discovery of an algorithm to factor numbers on a quantum computer in polynomial time, quantum computation has become a subject of immense interest. Unfortunately, one of the key features of quantum computers - the difficulty of describing them on classical computers - also makes it difficult to describe and understand precisely what can be done with them. A formalism describing the evolution of operators rather than states has proven extremely fruitful in understanding an important class of quantum operations. States used in error correction and certain communication protocols can be described by their stabilizer, a group of tensor products of Pauli matrices. Even this simple group structure is sufficient to allow a rich range of quantum effects, although it falls short of the full power of quantum computation.

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nrenga/ghz_distillation_qec mentioned on GitHub report
qsi-baqs/jabalizer mentioned on GitHubMIT report
qsi-baqs/jabalizer.jl mentioned on GitHubMIT report

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