Latest: Algorithmic Fault Tolerance for Quantum Speed


Latest: Algorithmic Fault Tolerance for Quantum Speed

The potential to execute quantum computations reliably, regardless of the inherent susceptibility of quantum programs to errors, is a central problem in quantum info science. This entails designing strategies that may appropriate or mitigate the results of those errors as they happen in the course of the computation. Attaining this robustness is crucial for realizing the complete potential of quantum computer systems.

Overcoming these challenges will unlock the potential of superior computations. Traditionally, error correction codes tailored from classical computing have been explored, however these usually show insufficient for the distinctive traits of quantum errors. The event of efficient methods represents a important step towards sensible, large-scale quantum computation.

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