A technique is described which examines the properties of helium trapped in bubbles in implanted metals. Helium implanted materials are characterized using resonant elastic proton backscattering and Transmission Electron Microscopy (T.E.M.). Spectroscopic measurements using synchrotron radiation in the far vacuum vutraviolet are then performed to examine the density sensitive optical absorption resulting from the 1S - 2P transition in the implanted helium. Experimental data for helium implanted aluminum thin films are presented which indicate atomic densities in small (50� diameter) bubbles of the order of 1023 atoms cm-3
Iron-9% chromium alloy of controlled purity and microstructure was helium implanted and studied usin...
In the present contribution, the basic ideas pertinent to modelling helium accumulation in metals ar...
Development of topography in thin (55.5 μg cm−2) self-supporting aluminium films, caused by high flu...
The novel application of vacuum ultra-violet absorption spectroscopy and electron energy loss spectr...
The physical state of helium in small bubbles in aluminium and nickel films (500 - 1000 $\mathring{A...
A review is presented of experiments and calculations which have yielded information on the state of...
A study is presented of the effect of 5 keV helium ion bombardment on thin (about 2000 Å) aluminium ...
As a continuation of a resear program aimed at studying the interaction of ion implanted helium with...
Helium was implanted in a homogeneous distribution into 10 $\mu$m thick foils of nickel and copper a...
The damages of implanted helium ions together with energetic neutrons in tungsten is concerned under...
Helium ion implantation into metals can be used to form nanoscale cavities in high concentration in ...
Optical and magnetooptical investigations are reported for metal atoms in a matrix of superfluid or ...
The damages of implanted helium ions together with energetic neutrons in tungsten is concerned under...
Effect of helium on void swelling was studied in high-purity α-iron, irradiated using energetic self...
Iron-9% chromium alloy of controlled purity and microstructure was helium implanted and studied usin...
Iron-9% chromium alloy of controlled purity and microstructure was helium implanted and studied usin...
In the present contribution, the basic ideas pertinent to modelling helium accumulation in metals ar...
Development of topography in thin (55.5 μg cm−2) self-supporting aluminium films, caused by high flu...
The novel application of vacuum ultra-violet absorption spectroscopy and electron energy loss spectr...
The physical state of helium in small bubbles in aluminium and nickel films (500 - 1000 $\mathring{A...
A review is presented of experiments and calculations which have yielded information on the state of...
A study is presented of the effect of 5 keV helium ion bombardment on thin (about 2000 Å) aluminium ...
As a continuation of a resear program aimed at studying the interaction of ion implanted helium with...
Helium was implanted in a homogeneous distribution into 10 $\mu$m thick foils of nickel and copper a...
The damages of implanted helium ions together with energetic neutrons in tungsten is concerned under...
Helium ion implantation into metals can be used to form nanoscale cavities in high concentration in ...
Optical and magnetooptical investigations are reported for metal atoms in a matrix of superfluid or ...
The damages of implanted helium ions together with energetic neutrons in tungsten is concerned under...
Effect of helium on void swelling was studied in high-purity α-iron, irradiated using energetic self...
Iron-9% chromium alloy of controlled purity and microstructure was helium implanted and studied usin...
Iron-9% chromium alloy of controlled purity and microstructure was helium implanted and studied usin...
In the present contribution, the basic ideas pertinent to modelling helium accumulation in metals ar...
Development of topography in thin (55.5 μg cm−2) self-supporting aluminium films, caused by high flu...