Quantum crystals abound in the whole range of solid-state species. Below a certain threshold temperature the physical behavior of rare gases (4He and Ne), molecular solids (H2 and CH4), and some ionic (LiH), covalent (graphite), and metallic (Li) crystals can be explained only in terms of quantum nuclear effects (QNE). A detailed comprehension of the nature of quantum solids is critical for achieving progress in a number of fundamental and applied scientific fields such as planetary sciences, hydrogen storage, nuclear energy, quantum computing, and nanoelectronics. This review describes the current physical understanding of quantum crystals formed by atoms and small molecules, as well as the wide palette of simulation techniques that are us...
This thesis is concerned with the development and application of quantum Monte Carlo (QMC) methods f...
With an increase of computational capabilities, ab initio molecular dynamics becomes the natural cho...
Standard X-ray crystallography methods use free-atom models to calculate mean unit-cell charge densi...
Quantum crystals abound in the whole range of solid-state species. Below a certain threshold tempera...
The path-integral formulation of the statistical mechanics of quantum many-body systems is described...
Atomistic simulations are a bottom up approach that predict properties of materials by modelling the...
We present a theory of the thermodynamics of an incommensurate quantum solid. The ground state of th...
A possible alternative to the ordinary gas-like computation for nuclear matter is investigated under...
A novel quantum-chemical approach to the properties of molecular crystals has recently been develope...
Electronic structure studies of crystalline solids are dominated by density functional theory (DFT),...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Abstract. We describe quantum Monte Carlo methods for simulating quantum systems. These techniques a...
This thesis describes how to create and probe novel phases of matter and exotic (non-quasiparticle) ...
Computational modeling techniques are now standard tools in solid‐state science. They are used routi...
We have developed a quantum molecular dynamics simulation method which can widely search hydrogen sy...
This thesis is concerned with the development and application of quantum Monte Carlo (QMC) methods f...
With an increase of computational capabilities, ab initio molecular dynamics becomes the natural cho...
Standard X-ray crystallography methods use free-atom models to calculate mean unit-cell charge densi...
Quantum crystals abound in the whole range of solid-state species. Below a certain threshold tempera...
The path-integral formulation of the statistical mechanics of quantum many-body systems is described...
Atomistic simulations are a bottom up approach that predict properties of materials by modelling the...
We present a theory of the thermodynamics of an incommensurate quantum solid. The ground state of th...
A possible alternative to the ordinary gas-like computation for nuclear matter is investigated under...
A novel quantum-chemical approach to the properties of molecular crystals has recently been develope...
Electronic structure studies of crystalline solids are dominated by density functional theory (DFT),...
Variational and Diffusion Monte Carlo are powerful computational methods which can afford accurate e...
Abstract. We describe quantum Monte Carlo methods for simulating quantum systems. These techniques a...
This thesis describes how to create and probe novel phases of matter and exotic (non-quasiparticle) ...
Computational modeling techniques are now standard tools in solid‐state science. They are used routi...
We have developed a quantum molecular dynamics simulation method which can widely search hydrogen sy...
This thesis is concerned with the development and application of quantum Monte Carlo (QMC) methods f...
With an increase of computational capabilities, ab initio molecular dynamics becomes the natural cho...
Standard X-ray crystallography methods use free-atom models to calculate mean unit-cell charge densi...