We present a concurrent Monte Carlo (MC) - molecular dynamics (MD) approach to modeling of matter response to excitation of its electronic system. The two methods are combined on-the-fly at each time step in one code, TREKIS-4. The MC model describes arrival of irradiation, which in the current implementation can consist of a photon, an electron, or a fast ion. It also traces induced cascades of excitation of secondary particles, electrons and holes, and their energy exchange with atoms due to scattering. The excited atomic system is simulated with an MD model. We propose a simple and efficient way to account for nonthermal effects in the electron-atom energy transfer in covalent materials via conversion of potential energy of the ensemble ...
The present PhD thesis contributes to the development of numerical methods used to reproduce the ele...
The event-by-event Monte Carlo model, TREKIS, was developed to describe the excitation of the electr...
A split-step numerical method for calculating ultrafast free-electron dynamics in dielectrics is int...
The authors present a concurrent Monte Carlo (MC)–molecular dynamics (MD) approach to modeling matte...
When matter is exposed to a high-intensity x-ray free-electron-laser pulse, the x rays excite inner-...
In this paper, we present an extension to our code, XCASCADE [Medvedev, Appl. Phys. B 118, 417], tha...
In this thesis we use a time-dependent tight-binding model metal evolving under semiclassical Ehrenf...
Radiation damage has traditionally been modelled using classical molecular dynamics, in which the ro...
The present dissertation contains the theoretical studies performed on the topic of a high energy de...
n this article, we review the molecular dynamics (MD) methods for use in simulations of radiation ef...
doi:10.1088/1367-2630/11/1/013004 Abstract. Classical molecular dynamics (MD) is a frequently used t...
The design of metals and alloys resistant to radiation damage involves the physics of electronic exc...
The remarkable success of x-ray free-electron lasers and their ability to image biological macromole...
We study of the movement of energy between molecules and an environment. Understanding energy transf...
We present a method for studying the movement of electrons and energy within and between electronica...
The present PhD thesis contributes to the development of numerical methods used to reproduce the ele...
The event-by-event Monte Carlo model, TREKIS, was developed to describe the excitation of the electr...
A split-step numerical method for calculating ultrafast free-electron dynamics in dielectrics is int...
The authors present a concurrent Monte Carlo (MC)–molecular dynamics (MD) approach to modeling matte...
When matter is exposed to a high-intensity x-ray free-electron-laser pulse, the x rays excite inner-...
In this paper, we present an extension to our code, XCASCADE [Medvedev, Appl. Phys. B 118, 417], tha...
In this thesis we use a time-dependent tight-binding model metal evolving under semiclassical Ehrenf...
Radiation damage has traditionally been modelled using classical molecular dynamics, in which the ro...
The present dissertation contains the theoretical studies performed on the topic of a high energy de...
n this article, we review the molecular dynamics (MD) methods for use in simulations of radiation ef...
doi:10.1088/1367-2630/11/1/013004 Abstract. Classical molecular dynamics (MD) is a frequently used t...
The design of metals and alloys resistant to radiation damage involves the physics of electronic exc...
The remarkable success of x-ray free-electron lasers and their ability to image biological macromole...
We study of the movement of energy between molecules and an environment. Understanding energy transf...
We present a method for studying the movement of electrons and energy within and between electronica...
The present PhD thesis contributes to the development of numerical methods used to reproduce the ele...
The event-by-event Monte Carlo model, TREKIS, was developed to describe the excitation of the electr...
A split-step numerical method for calculating ultrafast free-electron dynamics in dielectrics is int...