Positron annihilation in solid state matter can be utilized to detect and identify open-volume defects. The momentum distribution of the annihilation radiation is an important observable in positron-based measurements, and can reveal information on the chemical surroundings of the defect sites. In this work we present a variational quantum Monte Carlo method for simulation of the momentum densities of annihilating electron-positron pairs in semiconductors and insulators. We study finite-size effects, effects of lattice vibrations, and different levels of trial wave functions. Small simulation cells and simple wave function forms are found to be sufficient for accurate calculations in simulation of pristine lattices, enabling cheap accumulat...
ABSTRACT: Various point defects in silicon are studied theoretically from the point view of positron...
The coincidence Doppler broadening (CDB) technique is widely used to measure one-dimensional momentu...
Positron annihilation spectroscopy is particularly suitable for studying vacancy-type defects in sem...
Positron annihilation in solid state matter can be utilized to detect and identify open-volume defec...
Positron annihilation in solid-state matter can be utilized to detect and identify open-volume defec...
We present an analysis of positron lifetimes in solids with unprecedented depth. Instead of modeling...
Quantum Monte Carlo calculations of the relaxation energy, pair-correlation function, and annihilati...
Measuring the Doppler broadening of the positron annihilation radiation or the angular correlation b...
An accurate method to compute the annihilation rate in positronic systems by means of quantum Monte ...
Quantum Monte Carlo (QMC) is an accurate but computationally expensive technique for simulating the ...
Positron states at pure monovacancies and divacancies and vacancy-phosphorus pairs in Si as well as ...
A theory for calculating the momentum distribution of annihilating positron-electron pairs in solids...
We show that the Doppler broadening of positron annihilation radiation can be used in the identifica...
In silicon processing technology one of the most important current objectives is to achieve a contro...
AbstractIntrinsic point defects exist in all semiconducting materials. Their identification and meas...
ABSTRACT: Various point defects in silicon are studied theoretically from the point view of positron...
The coincidence Doppler broadening (CDB) technique is widely used to measure one-dimensional momentu...
Positron annihilation spectroscopy is particularly suitable for studying vacancy-type defects in sem...
Positron annihilation in solid state matter can be utilized to detect and identify open-volume defec...
Positron annihilation in solid-state matter can be utilized to detect and identify open-volume defec...
We present an analysis of positron lifetimes in solids with unprecedented depth. Instead of modeling...
Quantum Monte Carlo calculations of the relaxation energy, pair-correlation function, and annihilati...
Measuring the Doppler broadening of the positron annihilation radiation or the angular correlation b...
An accurate method to compute the annihilation rate in positronic systems by means of quantum Monte ...
Quantum Monte Carlo (QMC) is an accurate but computationally expensive technique for simulating the ...
Positron states at pure monovacancies and divacancies and vacancy-phosphorus pairs in Si as well as ...
A theory for calculating the momentum distribution of annihilating positron-electron pairs in solids...
We show that the Doppler broadening of positron annihilation radiation can be used in the identifica...
In silicon processing technology one of the most important current objectives is to achieve a contro...
AbstractIntrinsic point defects exist in all semiconducting materials. Their identification and meas...
ABSTRACT: Various point defects in silicon are studied theoretically from the point view of positron...
The coincidence Doppler broadening (CDB) technique is widely used to measure one-dimensional momentu...
Positron annihilation spectroscopy is particularly suitable for studying vacancy-type defects in sem...