For the detection of low energetic neutral atoms for the remote sensing of space plasmas, charge state conversion surfaces are used to ionize the neutrals for their subsequent measurement. We investigated a boron-doped Chemical Vapor Deposition (CVD) diamond sample for its suitability to serve as a conversion surface on future space missions, such as NASA’s Interstellar Mapping and Acceleration Probe. For H and O atoms incident on conversion surface with energies ranging from 195 to 1000 eV and impact angles from 6◦ to 15◦ we measured the angular scattering distributions and the ionization yields. Atomic force microscope and laser ablation ionization mass spectrometry analyses were applied to further characterize the sample. Based on...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
Two polycrystalline diamond surfaces, manufactured by chemical vapour deposition (CVD) technique, ar...
Interplanetary satellite missions and also satellites orbiting the Earth carry instruments to measur...
We report ultra low energy secondary ion mass spectrometry (ULE-SIMS) analysis of a single crystal b...
In recent years, the ability to grow single crystal layers of both doped and pure diamonds has impro...
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...
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...
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...
The Advanced Photon Source at ANL is a third-generation synchrotron facility that generates powerful...
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...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...
Two polycrystalline diamond surfaces, manufactured by chemical vapour deposition (CVD) technique, ar...
Interplanetary satellite missions and also satellites orbiting the Earth carry instruments to measur...
We report ultra low energy secondary ion mass spectrometry (ULE-SIMS) analysis of a single crystal b...
In recent years, the ability to grow single crystal layers of both doped and pure diamonds has impro...
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...
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...
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...
The Advanced Photon Source at ANL is a third-generation synchrotron facility that generates powerful...
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...
Progress made in the area of chemically vapor deposited (CVD) diamond films has led to its considera...
International audienceDiamond is a promising candidate for enhancing the negative-ion surface produc...