Diamond is a promising candidate for enhancing the negative-ion surface production in the ion sources for neutral injection in fusion reactors; hence evaluation of its reactivity towards hydrogen plasma is of high importance. Single crystal and polycrystalline diamond samples were exposed in Pilot-PSI with the D+ flux of (4‒7) 1024 m−2s−1 and the impact energy of 7–9 eV per deuteron at different surface temperatures; under such conditions physical sputtering is negligible, however chemical sputtering is important. Net chemical sputtering yield Y = 9.7 10−3 at/ion at 800 °C was precisely measured ex-situ using a protective platinum mask (5 × 10 × 2 μm) deposited beforehand on a single crystal followed by the post-mortem analysis using Transm...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
\u3cp\u3eDiamond is a promising candidate for enhancing the negative-ion surface production in the i...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
Diamond is a promising candidate for enhancing the negative-ion surface production in the ion source...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
\u3cp\u3eDiamond is a promising candidate for enhancing the negative-ion surface production in the i...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...
Boron-doped polycrystalline diamond (BDD) and highly oriented pyrolytic graphite (HOPG) surfaces wer...