The variational method is a versatile tool for classical simulation of a variety of quantum systems. Great efforts have recently been devoted to its extension to quantum computing for efficiently solving static many-body problems and simulating real and imaginary time dynamics. In this work, we first review the conventional variational principles, including the Rayleigh-Ritz method for solving static problems, and the Dirac and Frenkel variational principle, the McLachlan’s variational principle, and the time-dependent variational principle, for simulating real time dynamics. We focus on the simulation of dynamics and discuss the connections of the three variational principles. Previous works mainly focus on the unitary evolution of pure st...
Current quantum simulators suffer from multiple limitations such as short coherence time, noisy oper...
International audienceWe propose a neural-network variational quantum algorithm to simulate the time...
Gaussian wavepacket methods are an attractive way to solve the time-dependent Schrödinger equation (...
The variational method is a versatile tool for classical simulation of a variety of quantum systems....
Variational quantum algorithms have been proposed to solve static and dynamic problems of closed man...
We introduce a novel hybrid algorithm to simulate the real-time evolution of quantum systems using p...
Quantum algorithms for quantum dynamics simulations are traditionally based on implementing a Trotte...
Imaginary time evolution is a powerful tool for studying quantum systems. While it is possible to si...
We provide an efficient and general route for preparing non-trivial quantum states that are not adia...
Title: Quantum Variational Monte Carlo method Author: Jakub Kocák Department: Department of Physical...
We propose a variational quantum algorithm to study the real time dynamics of quantum systems as a g...
International audienceWe analyze the accuracy and sample complexity of variational Monte Carlo appro...
International audienceWe introduce a novel quantum-classical variational method that extends the qua...
Simulating time evolution of generic quantum many-body systems using classical numerical approaches ...
Here we present the quantum computing computational package for quantum chemistry. It contains the i...
Current quantum simulators suffer from multiple limitations such as short coherence time, noisy oper...
International audienceWe propose a neural-network variational quantum algorithm to simulate the time...
Gaussian wavepacket methods are an attractive way to solve the time-dependent Schrödinger equation (...
The variational method is a versatile tool for classical simulation of a variety of quantum systems....
Variational quantum algorithms have been proposed to solve static and dynamic problems of closed man...
We introduce a novel hybrid algorithm to simulate the real-time evolution of quantum systems using p...
Quantum algorithms for quantum dynamics simulations are traditionally based on implementing a Trotte...
Imaginary time evolution is a powerful tool for studying quantum systems. While it is possible to si...
We provide an efficient and general route for preparing non-trivial quantum states that are not adia...
Title: Quantum Variational Monte Carlo method Author: Jakub Kocák Department: Department of Physical...
We propose a variational quantum algorithm to study the real time dynamics of quantum systems as a g...
International audienceWe analyze the accuracy and sample complexity of variational Monte Carlo appro...
International audienceWe introduce a novel quantum-classical variational method that extends the qua...
Simulating time evolution of generic quantum many-body systems using classical numerical approaches ...
Here we present the quantum computing computational package for quantum chemistry. It contains the i...
Current quantum simulators suffer from multiple limitations such as short coherence time, noisy oper...
International audienceWe propose a neural-network variational quantum algorithm to simulate the time...
Gaussian wavepacket methods are an attractive way to solve the time-dependent Schrödinger equation (...