Semiconductor bulk crystals and multilayer structures with controlled isotopic composition have attracted much scientific and technical interest in the past few years. Isotopic composition affects a large number of physical properties, including phonon energies and lifetimes, bandgaps, the thermal conductivity and expansion coefficient and spin-related effects. Isotope superlattices are ideal media for self-diffusion studies. In combination with neutron transmutation doping, isotope control offers a novel approach to metal-insulator transition studies. Spintronics, quantum computing and nanoparticle science are emerging fields using isotope control
We have investigated the isotope effects on the thermodynamic properties of the isotope-enriched dia...
In this paper we review materials characterization techniques using radioactive isotopes at the ISOL...
Solid state physics (SSP) research at ISOLDE has been running since the mid-1970s and accounts for a...
A review of recent research involving isotopically controlled semiconductors is presented. Studies w...
Chemically and isotopically pure semiconductors offer a wealth of interesting physics. We review a n...
Most semiconductors consist of elements which are made up of a number of stable isotopes. Access to ...
The present book provides to the main ideas and techniques of the rapid progressing field of quantum...
Radioactive atoms have been used in solid-state physics and in material science for many decades. Be...
Semiconductors are prime examples of crystals which can be grown with unprecedented purity, imperfec...
Master of ScienceDepartment of Chemical EngineeringJames EdgarIsotopically engineering silicon to ac...
The use of enriched stable isotopes combined with modern epitaxial deposition and depth profiling te...
Isotopic Engineering (IE) refers to use of the diversity of stable isotopes of chemical elements for...
Radioactive atoms have been used in solid-state physics and in material science for many decades. B...
The present paper focuses on the renormalization effects of the band gaps in the electronic band str...
Point defects in semiconductors play a decisive role for the functionality of semiconductors. A deta...
We have investigated the isotope effects on the thermodynamic properties of the isotope-enriched dia...
In this paper we review materials characterization techniques using radioactive isotopes at the ISOL...
Solid state physics (SSP) research at ISOLDE has been running since the mid-1970s and accounts for a...
A review of recent research involving isotopically controlled semiconductors is presented. Studies w...
Chemically and isotopically pure semiconductors offer a wealth of interesting physics. We review a n...
Most semiconductors consist of elements which are made up of a number of stable isotopes. Access to ...
The present book provides to the main ideas and techniques of the rapid progressing field of quantum...
Radioactive atoms have been used in solid-state physics and in material science for many decades. Be...
Semiconductors are prime examples of crystals which can be grown with unprecedented purity, imperfec...
Master of ScienceDepartment of Chemical EngineeringJames EdgarIsotopically engineering silicon to ac...
The use of enriched stable isotopes combined with modern epitaxial deposition and depth profiling te...
Isotopic Engineering (IE) refers to use of the diversity of stable isotopes of chemical elements for...
Radioactive atoms have been used in solid-state physics and in material science for many decades. B...
The present paper focuses on the renormalization effects of the band gaps in the electronic band str...
Point defects in semiconductors play a decisive role for the functionality of semiconductors. A deta...
We have investigated the isotope effects on the thermodynamic properties of the isotope-enriched dia...
In this paper we review materials characterization techniques using radioactive isotopes at the ISOL...
Solid state physics (SSP) research at ISOLDE has been running since the mid-1970s and accounts for a...