Numerical and geometrical aspects of flow-based variational quantum Monte Carlo

03/28/2022
by   James Stokes, et al.
0

This article aims to summarize recent and ongoing efforts to simulate continuous-variable quantum systems using flow-based variational quantum Monte Carlo techniques, focusing for pedagogical purposes on the example of bosons in the field amplitude (quadrature) basis. Particular emphasis is placed on the variational real- and imaginary-time evolution problems, carefully reviewing the stochastic estimation of the time-dependent variational principles and their relationship with information geometry. Some practical instructions are provided to guide the implementation of a PyTorch code. The review is intended to be accessible to researchers interested in machine learning and quantum information science.

READ FULL TEXT
research
11/24/2022

Quantum Adversarial Learning in Emulation of Monte-Carlo Methods for Max-cut Approximation: QAOA is not optimal

One of the leading candidates for near-term quantum advantage is the cla...
research
03/08/2023

A Survey of Quantum Alternatives to Randomized Algorithms: Monte Carlo Integration and Beyond

Monte Carlo sampling is a powerful toolbox of algorithmic techniques wid...
research
07/19/2020

Coarse-grained spectral projection (CGSP): A scalable and parallelizable deep learning-based approach to quantum unitary dynamics

We propose the coarse-grained spectral projection method (CGSP), a deep ...
research
03/30/2022

Monte Carlo Tree Search based Hybrid Optimization of Variational Quantum Circuits

Variational quantum algorithms stand at the forefront of simulations on ...
research
09/30/2020

Emulating the First Principles of Matter: A Probabilistic Roadmap

This chapter provides a tutorial overview of first principles methods to...
research
07/15/2021

Continuous-variable neural-network quantum states and the quantum rotor model

We initiate the study of neural-network quantum state algorithms for ana...
research
03/22/2021

Various variational approximations of quantum dynamics

We investigate variational principles for the approximation of quantum d...

Please sign up or login with your details

Forgot password? Click here to reset