Physics

Random Operations Boost Noisy Quantum Computers’ Performance

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Research from the University of New Mexico has demonstrated that incorporating randomization into quantum computing operations can enhance performance when quantum computers are affected by noise. The study, conducted by a Ph.D. student in the Department of Electrical and Computer Engineering, shows that random operations can mitigate the detrimental effects of environmental interference that currently limit quantum computer reliability and accuracy.


This finding could help address one of the most significant challenges in quantum computing: maintaining computational accuracy despite noise from environmental factors. The technique may enable more practical and reliable quantum computers without requiring perfect isolation from external interference, potentially accelerating the development of usable quantum computing systems.


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New research led by a graduating Ph.D. student in The University of New Mexico Department of Electrical and Computer Engineering has shown that randomization can improve quantum computer performance in the presence of noise.

Source: Randomization can improve quantum computer performance in presence of noise