Published April 2005 | Version v1
Journal article

Hydrogen depth profiling by p-p scattering in nominally anhydrous minerals

  • 1. Department of Nuclear Physics, Lund Institute of Technology, Lund University, P.O. Box 118, Solvegatan 14, S-221 00 Lund (Sweden)
  • 2. Swedish Museum of Natural History, Department of Mineralogy, P.O. Box 50007, S-104 05 Stockholm (Sweden)

Description

Hydrogen has been shown to occur as a trace element in many nominally anhydrous minerals. The presence of hydrogen in several of the major minerals in the Earth's mantle has received attention, due to the possibility that these phases provide a significant hydrogen reservoir. Recently an experimental and analytical procedure for hydrogen measurements in thin mineral samples by proton-proton scattering has been developed at the Lund Nuclear Microprobe facility. An annular surface barrier detector, divided in two insulated halves, is used to detect the scattered proton and the recoiled proton in coincidence. The summed energy of each detected proton pair can be used to produce depth profiles if the individual scattering angles are known. The easiest case is when only a small difference in energy between each detected proton pair is allowed, i.e. scattering angles very close to 45 deg. . This limitation criterion considerably reduces the statistics. For this reason the analytical method has been expanded to use the full detector area (35-55 deg..) and to identify the scattering angles individually for each hydrogen event. Nominally anhydrous minerals, both synthesized and of natural occurrence, with hydrogen concentrations from 10 to 100 ppm have been analysed. Hydrous minerals, as well as Mylar foils were used as standards. Depth profiles show that intrinsic hydrogen can be distinguished from surface contaminations, e.g. water adsorbed on the sample surfaces

Additional details

Identifiers

DOI
10.1016/j.nimb.2005.01.111;
PII
S0168-583X(05)00132-1;

Publishing Information

Journal Title
Nuclear Instruments and Methods in Physics Research. Section B, Beam Interactions with Materials and Atoms
Journal Volume
231
Journal Issue
1-4
Journal Page Range
p. 524-529
ISSN
0168-583X
CODEN
NIMBEU

Conference

Title
9. international conference on nuclear microprobe technology and applications
Acronym
ICNMTA-2004
Dates
13-17 Sep 2004
Place
Cavtat (Croatia)

Optional Information

Copyright
Copyright (c) 2005 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.