We have studied the annealing of vacancy defects in neutron-irradiated germanium. After irradiation, the Sb-doped samples [(Sb)=1.5×10 exp 15 cm exp −3] were annealed at 473, 673, and 773 K for 30 min. The positron lifetime was measured as a function of temperature (30–295 K). A lifetime component of 330 ps with no temperature dependence is observed in as-irradiated samples, identified as the positron lifetime in a neutral divacancy and indicating that the divacancy is stable at room temperature (RT). Annealing at 673 K resulted in an increase in the average positron lifetime, and in addition, the annealed samples further showed a larger lifetime component of 430 ps at RT, which is due to larger vacancy clusters. The average positron lifeti...
Electrical (and sometimes also mechanical) properties of a semiconductor are greatly influenced by v...
Positron-lifetime measurements in electron-irradiated pure Nb and Ta show that monovacancy migration...
Irradiation damage and its evolution in noble gas ion-irradiated tungsten have not been investigated...
We have studied the annealing of vacancy defects in neutron-irradiated germanium. After irradiation,...
Weakly n-type doped germanium has been irradiated with protons up to a fluence of 3×10 exp 14 cm exp...
Positron annihilation spectroscopy was used to study defects created during the ion implantation and...
Electrical properties of semiconductor materials are greatly influenced by point defects such as vac...
Thermal evolution of vacancy complexes was studied in P-doped ([P]=10 exp 18 cm exp −3) proton irrad...
An investigation has been made of the carrier-recombination behavior and annealing properties of rad...
Recent density functional theory calculations by Chen et al. [J. Appl. Phys. 103, 123519 (2008)] rev...
We have used positron annihilation spectroscopy to study the introduction and recovery of point defe...
Recent experimental and theoretical studies revealed that dopants in germanium (Ge) cluster with lat...
The thermal evolution of vacancies and vacancy clusters in tungsten (W) has been studied. W (100) si...
Deep level transient spectroscopy (DLTS) has been applied to defect centres in γ-ray compensated ger...
The paper presents new knowledge on primary defect formation in tungsten (W) and iron (Fe) irradiate...
Electrical (and sometimes also mechanical) properties of a semiconductor are greatly influenced by v...
Positron-lifetime measurements in electron-irradiated pure Nb and Ta show that monovacancy migration...
Irradiation damage and its evolution in noble gas ion-irradiated tungsten have not been investigated...
We have studied the annealing of vacancy defects in neutron-irradiated germanium. After irradiation,...
Weakly n-type doped germanium has been irradiated with protons up to a fluence of 3×10 exp 14 cm exp...
Positron annihilation spectroscopy was used to study defects created during the ion implantation and...
Electrical properties of semiconductor materials are greatly influenced by point defects such as vac...
Thermal evolution of vacancy complexes was studied in P-doped ([P]=10 exp 18 cm exp −3) proton irrad...
An investigation has been made of the carrier-recombination behavior and annealing properties of rad...
Recent density functional theory calculations by Chen et al. [J. Appl. Phys. 103, 123519 (2008)] rev...
We have used positron annihilation spectroscopy to study the introduction and recovery of point defe...
Recent experimental and theoretical studies revealed that dopants in germanium (Ge) cluster with lat...
The thermal evolution of vacancies and vacancy clusters in tungsten (W) has been studied. W (100) si...
Deep level transient spectroscopy (DLTS) has been applied to defect centres in γ-ray compensated ger...
The paper presents new knowledge on primary defect formation in tungsten (W) and iron (Fe) irradiate...
Electrical (and sometimes also mechanical) properties of a semiconductor are greatly influenced by v...
Positron-lifetime measurements in electron-irradiated pure Nb and Ta show that monovacancy migration...
Irradiation damage and its evolution in noble gas ion-irradiated tungsten have not been investigated...