We present a time-dependent density-functional method able to describe the photoelectron spectrum of atoms and molecules when excited by laser pulses. This computationally feasible scheme is based on a geometrical partitioning that efficiently gives access to photoelectron spectroscopy in time-dependent density-functional calculations. By using a geometrical approach, we provide a simple description of momentum-resolved photoemission including multiphoton effects. The approach is validated by comparison with results in the literature and exact calculations. Furthermore, we present numerical photoelectron angular distributions for randomly oriented nitrogen molecules in a short near-infrared intense laser pulse and helium-(I) angular spectra...
Abstract. We present a new time-dependent density functional theory (TDDFT) with optimized effective...
We present a method to compute the photoionization spectra of atoms and molecules in linear response...
We derive and extend the time-dependent surface-flux method introduced in [L. Tao, A. Scrinzi, New J...
We present a time-dependent density-functional method able to describe the photoelectron spectrum of...
Using time-dependent density functional theory we examine the energy, angular and time-resolved phot...
We present a novel theoretical approach to simulate spin, time, and angular-resolved photoelectron s...
We present a novel theoretical approach to simulate spin, time and angular-resolved photoelectron sp...
A nonperturbative theory for calculating time-resolved photoelectron angular distributions in linear...
First-principles methods for time-resolved angular resolved photoelectron spectroscopy play a pivota...
Semiclassical methods to simulate both steady and time-resolved photoelectron spectra are presented....
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
International audienceSemiclassical methods to simulate both steady and time-resolved photoelectron ...
© 2018 American Chemical Society. Photoelectron spectroscopy represents a valuable tool to analyze s...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We theoretically study how time- and angle-resolved photoemission spectroscopy can be applied for im...
Abstract. We present a new time-dependent density functional theory (TDDFT) with optimized effective...
We present a method to compute the photoionization spectra of atoms and molecules in linear response...
We derive and extend the time-dependent surface-flux method introduced in [L. Tao, A. Scrinzi, New J...
We present a time-dependent density-functional method able to describe the photoelectron spectrum of...
Using time-dependent density functional theory we examine the energy, angular and time-resolved phot...
We present a novel theoretical approach to simulate spin, time, and angular-resolved photoelectron s...
We present a novel theoretical approach to simulate spin, time and angular-resolved photoelectron sp...
A nonperturbative theory for calculating time-resolved photoelectron angular distributions in linear...
First-principles methods for time-resolved angular resolved photoelectron spectroscopy play a pivota...
Semiclassical methods to simulate both steady and time-resolved photoelectron spectra are presented....
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
International audienceSemiclassical methods to simulate both steady and time-resolved photoelectron ...
© 2018 American Chemical Society. Photoelectron spectroscopy represents a valuable tool to analyze s...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We theoretically study how time- and angle-resolved photoemission spectroscopy can be applied for im...
Abstract. We present a new time-dependent density functional theory (TDDFT) with optimized effective...
We present a method to compute the photoionization spectra of atoms and molecules in linear response...
We derive and extend the time-dependent surface-flux method introduced in [L. Tao, A. Scrinzi, New J...