We demonstrate computation of total dynamic multipole polarizabilities using path-integral Monte Carlo method (PIMC). The PIMC approach enables accurate thermal and nonadiabatic mixing of electronic, rotational, and vibrational degrees of freedom. Therefore, we can study the thermal effects, or lack thereof, in the full multipole spectra of the chosen one- and two-electron systems: H, Ps, He, Ps2, H2, and HD+. We first compute multipole-multipole correlation functions up to octupole order in imaginary time. The real-domain spectral function is then obtained by analytical continuation with the maximum entropy method. In general, sharpness of the active spectra is limited, but the obtained off-resonant polarizabilities are in good agreement w...
We present results for the solution of the large polaron Fröhlich Hamiltonian in 3 dimensions (3D) a...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...
We present a novel quantum Monte Carlo method based on a path integral in Fock space, which allows t...
Variational Monte Carlo (VMC) method and correlated wave functions were employed for the computation...
Väitöskirja käsittelee polarisoituvuutta ja erilaisia keinoja sen laskemiseksi polkuintegraali–Monte...
In this work, we propose new field-free estimators of static field-gradient polarizabilities for fin...
The generalized gradient-approximated (GGA) energy functionals used in density functional theory (DF...
In this paper we investigate a variationally stable procedure for multipolar dynamic polarizabilitie...
We propose and implement in this paper a highly correlated method for computing dynamic polarizabili...
Correlation contributions to the multipole moments and frequency dependent polarizabilities of molec...
Contains fulltext : mmubn000001_025233181.pdf (publisher's version ) (Open Access)...
Using the time-dependent extension, proposed by us recently, of the Hohenberg-Kohn-Sham density-func...
A simple and computationally efficient scheme to calculate approximate imaginary-frequency-dependent...
Path integral Monte Carlo (PIMC) is a quantum-level simulation method based on a stochastic sampling...
A method for calculating frequency‐dependent polarizabilities and Van der Waals dispersion coefficie...
We present results for the solution of the large polaron Fröhlich Hamiltonian in 3 dimensions (3D) a...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...
We present a novel quantum Monte Carlo method based on a path integral in Fock space, which allows t...
Variational Monte Carlo (VMC) method and correlated wave functions were employed for the computation...
Väitöskirja käsittelee polarisoituvuutta ja erilaisia keinoja sen laskemiseksi polkuintegraali–Monte...
In this work, we propose new field-free estimators of static field-gradient polarizabilities for fin...
The generalized gradient-approximated (GGA) energy functionals used in density functional theory (DF...
In this paper we investigate a variationally stable procedure for multipolar dynamic polarizabilitie...
We propose and implement in this paper a highly correlated method for computing dynamic polarizabili...
Correlation contributions to the multipole moments and frequency dependent polarizabilities of molec...
Contains fulltext : mmubn000001_025233181.pdf (publisher's version ) (Open Access)...
Using the time-dependent extension, proposed by us recently, of the Hohenberg-Kohn-Sham density-func...
A simple and computationally efficient scheme to calculate approximate imaginary-frequency-dependent...
Path integral Monte Carlo (PIMC) is a quantum-level simulation method based on a stochastic sampling...
A method for calculating frequency‐dependent polarizabilities and Van der Waals dispersion coefficie...
We present results for the solution of the large polaron Fröhlich Hamiltonian in 3 dimensions (3D) a...
Advanced potential energy surfaces are defined as theoretical models that explicitly include many-bo...
We present a novel quantum Monte Carlo method based on a path integral in Fock space, which allows t...