Efficient adaptive MCMC implementation for Pseudo-Bayesian quantum tomography

06/01/2021
by   The Tien Mai, et al.
0

We revisit the Pseudo-Bayesian approach to the problem of estimating density matrix in quantum state tomography in this paper. Pseudo-Bayesian inference has been shown to offer a powerful paradign for quantum tomography with attractive theoretical and empirical results. However, the computation of (Pseudo-)Bayesian estimators, due to sampling from complex and high-dimensional distribution, pose significant challenges that hampers their usages in practical settings. To overcome this problem, we present an efficient adaptive MCMC sampling method for the Pseudo-Bayesian estimator. We show in simulations that our approach is substantially faster than the previous implementation by at least two orders of magnitude which is significant for practical quantum tomography.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
09/17/2020

Fast and robust quantum state tomography from few basis measurements

Quantum state tomography is a powerful, but resource-intensive, general ...
research
06/29/2018

Quasi Markov Chain Monte Carlo Methods

Quasi-Monte Carlo (QMC) methods for estimating integrals are attractive ...
research
07/23/2018

Subsampling MCMC - An introduction for the survey statistician

The rapid development of computing power and efficient Markov Chain Mont...
research
07/23/2018

Subsampling MCMC - A review for the survey statistician

The rapid development of computing power and efficient Markov Chain Mont...
research
11/04/2021

Inapproximability of Positive Semidefinite Permanents and Quantum State Tomography

Quantum State Tomography is the task of estimating a quantum state, give...
research
12/17/2018

Adaptive Quantum State Tomography with Neural Networks

Quantum State Tomography is the task of determining an unknown quantum s...
research
12/15/2022

Demonstration of machine-learning-enhanced Bayesian quantum state estimation

Machine learning (ML) has found broad applicability in quantum informati...

Please sign up or login with your details

Forgot password? Click here to reset