Skip to content

Experimental Bayesian quantum phase estimation on a silicon photonic chip

Research output: Contribution to journalArticle

Original languageEnglish
Article number100503
Number of pages6
JournalPhysical Review Letters
Volume118
Issue number10
DOIs
DateAccepted/In press - 3 Feb 2017
DatePublished (current) - 7 Mar 2017

Abstract

Quantum phase estimation is a fundamental subroutine in many quantum algorithms, including Shor's factorization algorithm and quantum simulation. However, so far results have cast doubt on its practicability for near-term, nonfault tolerant, quantum devices. Here we report experimental results demonstrating that this intuition need not be true. We implement a recently proposed adaptive Bayesian approach to quantum phase estimation and use it to simulate molecular energies on a silicon quantum photonic device. The approach is verified to be well suited for prethreshold quantum processors by investigating its superior robustness to noise and decoherence compared to the iterative phase estimation algorithm. This shows a promising route to unlock the power of quantum phase estimation much sooner than previously believed.

    Structured keywords

  • Bristol Quantum Information Institute

Download statistics

No data available

Documents

Documents

DOI

View research connections

Related faculties, schools or groups