Area of research
Materials Chemistry · Nuclear and High Energy Physics
Research interest
Research interests include Materials science, Negative thermal expansion, Doping, Prussian blue, Beam (structure), and Annealing (glass).
SPIDER, the Negative Ion Source Prototype for ITER: Overview of Operations and Cesium Injection
Lessons learned after three years of SPIDER operation and the first MITICA integrated tests
First operations with caesium of the negative ion source SPIDER
On the road to ITER NBIs: SPIDER improvement after first operation and MITICA construction progress
Large isotropic negative thermal expansion in water-free Prussian blue analogues of ScCo(CN)6
Gold-Hyperdoped Germanium with Room-Temperature Sub-Band-Gap Optoelectronic Response
Large Negative Thermal Expansion Induced by Synergistic Effects of Ferroelectrostriction and Spin Crossover in PbTiO<sub>3</sub>-Based Perovskites
N-type heavy doping with ultralow resistivity in Ge by Sb deposition and pulsed laser melting
Low-Frequency Phonon Driven Negative Thermal Expansion in Cubic GaFe(CN)<sub>6</sub> Prussian Blue Analogues
Tunable Thermal Expansion from Negative, Zero, to Positive in Cubic Prussian Blue Analogues of GaFe(CN)<sub>6</sub>
Switching Between Giant Positive and Negative Thermal Expansions of a YFe(CN)<sub>6</sub>‐based Prussian Blue Analogue Induced by Guest Species
Optical properties of highly n-doped germanium obtained by<i>in situ</i>doping and laser annealing
Low temperature deactivation of Ge heavily n-type doped by ion implantation and laser thermal annealing
Laser annealing in Si and Ge: Anomalous physical aspects and modeling approaches
N-type doping of Ge by As implantation and excimer laser annealing
B-doping in Ge by excimer laser annealing